Chitosanchitosan-based bionanocomposites functionalized with polyphenol
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GONTA, Alexandru, LUPASCU, Tudor. Chitosanchitosan-based bionanocomposites functionalized with polyphenol. In: Ecological and environmental chemistry : - 2017, Ed. 6, 2-3 martie 2017, Chișinău. Chisinau, Republic of Moldova: Academy of Sciences of Moldova, 2017, Ediția 6, p. 217.
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Ecological and environmental chemistry
Ediția 6, 2017
Conferința "Ecological and environmental chemistry 2017"
6, Chișinău, Moldova, 2-3 martie 2017

Chitosanchitosan-based bionanocomposites functionalized with polyphenol


Pag. 217-217

Gonta Alexandru, Lupascu Tudor
 
Institute of Chemistry of the Academy of Sciences of Moldova
 
 
Disponibil în IBN: 19 martie 2019


Rezumat

Ecologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery by Ecologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery byEcologically neglected polyphenols, extracted from secondary winery by-products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with products, are natural antioxidants with unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against unique properties such as hydrogen electron splitting and elimination, considered potential inhibitors against reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1].reactive oxygen or nitrogen species and efficient antimicrobial activity [1]. For the enhancemen For the enhancemenFor the enhancemenFor the enhancemen For the enhancemen For the enhancemen For the enhancemenFor the enhancemenFor the enhancemenFor the enhancemen For the enhancemenFor the enhancemenFor the enhancement of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a t of its antioxidant and antibacterial properties, entrapment natural biocides into a matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are matrix can be used for prolongation of their biological activities. Biopolymers such as chitosan, cellulose, dextran are supramacromolecular biocompatible compsupramacromolecular biocompatible compsupramacromolecular biocompatible compsupramacromolecular biocompatible compsupramacromolecular biocompatible compsupramacromolecular biocompatible compsupramacromolecular biocompatible comp supramacromolecular biocompatible compsupramacromolecular biocompatible compsupramacromolecular biocompatible compsupramacromolecular biocompatible compsupramacromolecular biocompatible comp supramacromolecular biocompatible compsupramacromolecular biocompatible comp supramacromolecular biocompatible compsupramacromolecular biocompatible compsupramacromolecular biocompatible comp supramacromolecular biocompatible comp supramacromolecular biocompatible compsupramacromolecular biocompatible compsupramacromolecular biocompatible comp supramacromolecular biocompatible comp supramacromolecular biocompatible comp supramacromolecular biocompatible compsupramacromolecular biocompatible compounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. ounds, with low toxicity and biological recognized by the cell entities [2]. Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from Chitosan is a biopolymer, which obtained by the reaction of deacetylation chitin, natural product extracted from the crustacean species bio the crustacean species bio the crustacean species bio the crustacean species biothe crustacean species biothe crustacean species bio the crustacean species bio the crustacean species biothe crustacean species biothe crustacean species biothe crustacean species bio the crustacean species bio the crustacean species bio -waste.waste. waste. The present work was undertaken to determine the detailed morphology of the chitosan-based compositions (hydrogel, films), containing biocide Enoxil and hydroxyethyl cellulose (HEC) as stabilizer, using atomic force microscopy, DSC, NMR, FT-IR and others. The results showed that the addition of Enoxil into Ch solution affected the morphology (sizes of nanodomains and roughness of the free sample surface), as well as the porosity of the bottom films surface. Moreover, DSC and DMA analysis display that the Enoxil introduction changed the thermal and relaxation properties of composite films, which can be explained via assemble at the nanolevel. As evidenced by AFM, the ternary blend Ch/HEC-Enoxil showed the morphology similar to the initial Ch film. Moreover, entrapment of Enoxil into chitosan/HEC matrix enhanced antioxidant capacity (AC) as compared to Enoxil alone determined by ABTS and DPPH assays. Microbiological investigations have revealed that biomedical films chitosan/HEC – Enoxil are efficient for inhibition of growth of S.aureus and E.coli bacteria. Therefore, these biocomposites, mainly derived from secondary bio-waste materials, could be proposed for using in different biomedical applications.