[1] W. Xia, P. Liu, J. Zhang, J. Chen, Biological activities of chitosan and chitooligosaccharides, Food Hydrocolloids 25(2) (2011) 170-179. [2] M. Aider, Chitosan application for active bio-based films production and potential in the food industry:Review, LWT-Food Sci. Technol. 43(6) (2010) 837-842. [3] M. Matet, M.C. Heuzey, A. Ajji, P. Sarazin, Plasticized chitosan/polyolefin films produced by extrusion, Carbohydr. Polym. 117(2015) 177-184. [4] R. Priyadarshi, J.W. Rhim, Chitosan-based biodegradable functional films for food packaging applications, Innovative Food Sci. Emerg. Technol. 62(2020) 102346. [5] C. Vasile, R.N. Darie, C.N. Cheaburu-Yilmaz, G.-M. Pricope, M. Bračič, D. Pamfil, G.E. Hitruc, D. Duraccio, Low density polyethylene-chitosan composites, Composites Part B 55(2013) 314-323. [6] I. Bano, M. Arshad, T. Yasin, M.A. Ghauri, Preparation, characterization and evaluation of glycerol plasticized chitosan/PVA blends for burn wounds, Int. J. Biol. Macromol. 124(2019) 155-162. [7] A. Jara, L.D. Daza, D.M. Aguirre, J.A. Muñoza, J.F. Solanilla, H.A. Váquiro, Characterization of chitosan edible films obtained with various polymer concentrations and drying temperatures, Int. J. Biol. Macromol. 113(2018) 1233-1240. [8] K. Divya, V. Smitha, M.S. Jisha, Antifungal, antioxidant and cytotoxic activities of chitosan nanoparticles and its use as an edible coating on vegetables, Int. J. Biol. Macromol. 114(2018) 572-577. [9] A.P. Martínez-Camacho, M.O. Cortez-Rocha, A.Z. Graciano-Verdugo, F. Rodríguez-Félix, M.M. Castillo-Ortega, A. Burgos-Hernández, J.M. EzquerraBrauer, M. Plascencia-Jatomea, Extruded films of blended chitosan, low density polyethylene and ethylene acrylic acid, Carbohydr. Polym. 91(2) (2013) 666-674. [10] F.M. Pelissari, F. Yamashita, M.V.E. Grossmann, Extrusion parameters related to starch/chitosan active films properties, Int. J. Food Sci. Technol. 46(4) (2011) 702-710. [11] M. Sunilkumar, A.A. Gafoor, A. Anas, A.P. Haseena, A. Sujith, Dielectric properties:a gateway to antibacterial assay-a case study of low-density polyethylene/chitosan composite films, Polym. J. 46(2014) 422-429. [12] J.M. Quiroz-Castillo, D.E. Rodríguez-Félix, H. Grijalva-Monteverde, T.D. Castillo-Castro, M. Plascencia-Jatomea, F. Rodríguez-Félix, P.J. HerreraFranco, Preparation of extruded polyethylene/chitosan blends compatibilized with polyethylene-graft-maleic anhydride, Carbohydr. Polym. 101(2014) 1094-1100. [13] M. Matet, M.C. Heuzey, A. Ajji, Morphology and antibacterial properties of plasticized chitosan/metallocene polyethylene blends, J. Mater. Sci. 49(15) (2014) 5427-5440. [14] K.V. Reesha, S.K. Panda, J. Bindu, T.O. Varghese, Development and characterization of an LDPE/chitosan composite antimicrobial film for chilled fish storage, Int. J. Biol. Macromol. 79(2015) 934-942. [15] V.M. Correlo, L.F. Boesel, M. Bhattacharya, J.F. Mano, N.M. Neves, R.L. Reis, Properties of melt processed chitosan and aliphatic polyester blends, Mater. Sci. Eng., A 403(1-2) (2005) 57-68. [16] R. Grande, L.A. Pessan, A.J.F. Carvalho, Thermoplastic blends of chitosan:A method for the preparation of high thermally stable blends with polyesters, Carbohydr. Polym. 191(2018) 44-52. [17] G. Tsai, W. Su, Antibacterial activity of shrimp chitosan against Escherichia coli, J. Food Prot. 62(3) (1999) 239-243. [18] Z. Li, F. Yang, R. Yang, Synthesis and characterization of chitosan derivatives with dual-antibacterial functional groups, Int. J. Biol. Macromol. 75(2015) 378-387. [19] C.H. Wang, W.S. Liu, J.F. Sun, G.G. Hou, Q. Chen, W. Cong, F. Zhao, Non-toxic Oquaternized chitosan materials with better water solubility and antimicrobial function, Int. J. Biol. Macromol. 84(2016) 418-427. [20] X. Liu, A. Zeng, L. Li, F. Yang, Q. Wang, Z. Sun, J. Shen, Synthesis of a novel amphiphilic quaternized chitosan and its distribution in rats, J. Biomater. Sci., Polym. Ed. 22(9) (2011) 1115-1130. [21] P. Zhou, Y. Xia, X. Cheng, P. Wang, Y. Xie, S. Xu, Enhanced bone tissue regeneration by antibacterial and osteoinductive silica-HACC-zein composite scaffolds loaded with rhBMP-2, Biomaterials 35(38) (2014) 10033-10045. [22] R. Augustine, H.N. Malik, D.K. Singhal, A. Mukherjee, D. Malakar, N. Kalarikkal, S. Thomas, Electrospun polycaprolactone/ZnO nanocomposite membranes as biomaterials with antibacterial and cell adhesion properties, J. Polym. Res. 21(2014) 347. [23] A.G. Namboodiri, R. Parameswaran, Fibro-porous polycaprolactone membrane containing extracts of biophytum sensitivum:A prospective antibacterial wound dressing, J. Appl. Polym. Sci. 129(4) (2013) 2280-2286. [24] K. Kalwar, W.X. Sun, D.L. Li, X.J. Zhang, D. Shan, Coaxial electrospinning of polycaprolactone@chitosan:Characterization and silver nanoparticles incorporation for antibacterial activity, React. Funct. Polym. 107(2016) 87-92. [25] A.R. Sarasam, R.K. Krishnaswamy, S.V. Madihally, Blending chitosan with Polycaprolactone:Effects on physicochemical and antibacterial properties, Biomacromolecules 7(4) (2006) 1131-1138. [26] M.A. Woodruff, D.W. Hutmacher, The return of a forgotten polymer-Polycaprolactone in the 21st century, Prog. Polym. Sci. 35(10) (2010) 1217-1256. [27] S. Sahoo, A. Sasmal, D. Sahoo, P. Nayak, Synthesis and characterization of chitosan-polycaprolactone blended with organoclay for control release of doxycycline, J. Appl. Polym. Sci. 118(6) (2010) 3167-3175. [28] D.M. Garcia Cruz, J.L. Gomez Ribelles, M. Salmeron Sanchez, Blending polysaccharides with biodegradable polymers. I. Properties of chitosan/polycaprolactone blends, J. Biomed. Mater. Res. B 85(2) (2008) 303-313. [29] A. Sarasam, Characterization of chitosan-polycaprolactone blend for tissue engineering application, Biomaterials 26(27) (2005) 5500-5508. [30] C.S. Wu, A comparison of the structure, thermal properties, and biodegradability of polycaprolactone/chitosan and acrylic acid grafted polycaprolactone/chitosan, Polymer 46(1) (2005) 147-155. [31] Y. Ling, Y. Luo, J. Luo, X. Wang, R. Sun, Synthesis optimization of quaternized chitosan and its action as reducing and stabilizing agent for gold nanoparticles, J. Macromol. Sci. A 50(12) (2013) 1194-1200. [32] Z. Jia, D. Shen, W. Xu, Synthesis and antibacterial activities of quaternary ammonium salt of chitosan, Carbohydr. Res. 333(1) (2001) 1-6. [33] T.G. Liu, B. Li, W. Huang, B. Lv, J. Chen, J.X. Zhang, L.P. Zhu, Effects and kinetics of a novel temperature cycling treatment on the N-deacetylation of chitin in alkaline solution, Carbohydr. Polym. 77(1) (2009) 110-117. [34] X. Huang, C. Xu, Y. Li, H. Cheng, X. Wang, R. Sun, Quaternized chitosanstabilized copper sulfide nanoparticles for cancer therapy, Mater. Sci. Eng., C 96(2019) 129-137. [35] Y. Tang, L. Xie, M. Sai, N. Xu, D. Ding, Preparation and antibacterial activity of quaternized chitosan with iodine, Mater. Sci. Eng., C 48(2015) 1-4. [36] S. Omidi, A. Kakanejadifard, Modification of chitosan and chitosan nanoparticle by long chain pyridinium compounds:Synthesis, characterization, antibacterial, and antioxidant activities, Carbohydr. Polym. 208(2019) 477-485. [37] G. Liu, K. Li, Q. Luo, H. Wang, Z. Zhang, PEGylated chitosan protected silver nanoparticles as water-borne coating for leather with antibacterial property, J. Colloid Interface Sci. 490(2017) 642-651. [38] G.Z. Kyzas, P.I. Siafaka, E.G. Pavlidou, K.J. Chrissafis, D.N. Bikiaris, Synthesis and adsorption application of succinyl-grafted chitosan for the simultaneous removal of zinc and cationic dye from binary hazardous mixtures, Chem. Eng. J. 259(2015) 438. [39] A. Wang, Q. Zhu, Z. Xing, Design and synthesis of a calcium modified quaternized chitosan hollow sphere for efficient adsorption of SDBS, J. Hazard. Mater. 369(2019) 342-352. [40] E. Oyervides-Muñoz, E. Pollet, G. Ulrich, G. de Jesús Sosa-Santillán, L. Avérous, Original method for synthesis of chitosan-based antimicrobial agent by quaternary ammonium grafting, Carbohydr. Polym. 157(2017) 1922-1932. [41] A. Zeng, A. Zeng, Synthesis of a quaternized beta cyclodextrin-montmorillonite composite and its adsorption capacity for Cr(VI), methyl orange, and pnitrophenol, Water, Air, Soil Pollut. 228(2017) 278. [42] C. Dai, H. Kang, W. Yang, J. Sun, C. Liu, G. Cheng, G. Rong, X. Wang, X. Wang, Z. Jin, K. Zhao, O-2'-Hydroxypropyltrimethyl ammonium chloride chitosan nanoparticles for the delivery of live Newcastle disease vaccine, Carbohydr. Polym. 130(2015) 280-289. [43] Y. Mi, W. Tan, J. Zhang, L. Wei, Y. Chen, Q. Li, F. Dong, Z. Guo, Synthesis, characterization, and antifungal property of hydroxypropyltrimethyl ammonium chitosan halogenated acetates, Mar. Drugs 16(9) (2018) 315. [44] S.S. Ray, M. Bousmina, Biodegradable polymers and their layered silicate nanocomposites:in greening the 21st century materials world, Prog. Mater Sci. 50(8) (2005) 962-1079. [45] S. Jeung, M.K. Mishra, Hot melt reactive extrusion of chitosan with Poly(acrylic acid), Int. J. Polymer. Mater. 60(1) (2010) 102-113. |