[1] Sorrentino, A., Gorrasi, G. and Vittoria, V., 2007. Potential perspectives of bio-nanocomposites for food packaging applications. Trends in Food Science and Technology, 18: 84-95.
[2] Missoum, K., Martoïa, F. Belgacem. M.N. and Bras, J., 2013. Effect of chemically modified nanofibrillated cellulose addition on the properties of fiber-based materials. Industrial Crops and Products, 48: 98-105.
[3] Nicu, R., Lupei, M. Balan, T. and Bobu, E., 2013. Alkl-chitosan as paper coating material to improve water barrier properties. Cellulose Chemistry and Technology, 47(8): 623-630.
[4] Mashak, A., 2014. A Brief Overview on Biodegradable Polymers in Drug Delivery Systems. Polymerization, 4(3): 23-35. [In Persian]
[5] Coma, V., Martial-Gros, A., Garreau, S. Copinet, A., Salin, F. and Deschamps, A., 2002. Edible antimicrobial films based on chitosan matrix. Journal of Food Science, 67(3): 1162-1169.
[6] Muzzarelli, R.A.A., 1988. Carboxymethylated chitins and chitosans. Carbohydrate Polymers, 8: 1-21.
[7] Chen, L., Du, Y., Tian Z. and Sun, L., 2005. Effect of the degree of deacetylation and the substitution of carboxymethyl chitosan on its aggregation behavior. Journal of Polymer Science Polymer Physics, 43: 296-305.
[8] Rahmani, S., Mohammadi, Z., Amini, M., Isaei, E., Taheritarigh, S., Rafiee Tehrani, N. and Rafiee Tehrani M., 2016. Methylated 4-N, N dimethyl aminobenzyl N, O carboxymethyl chitosanas a new chitosan derivative: synthesis, characterization, cytotoxicity, and antibacterial activity. Carbohydrate Polymers, 149: 131-139.
[9] Shariatinia, Z., 2018. Carboxymethyl chitosan: Properties and biomedical applications. International Journal of Biological Macromolecules, 120: 1406-1419.
[10] Oromiahee, A. and Mirlohi, F.S., 2019. Preparation and Evaluation of Physical and Mechanical Properties of Nano Coating of Carboxymethyl Cellulose and Guar Gum and Nanoparticles of Zinc Oxide. Scientific Journal of Packaging science and art, 10(38): 6-17. (In Persian).
[11] Cheng, S., Zhang, Y., Cha, R., Yang, J. and Jiang, X., 2016. Water soluble nanocrystalline cellulose films with highly transparent and oxygen barrier property. Nanoscale, 2: 1-6.
[12] Poorna, K.S.V., Singh, A., Rathore, A. and Kumar, A., 2016. Novel cross linked guar gum - g- poly (acrylate) porous superabsorbent hydrogels: Characterization and swelling behavior in different environments. Carbohydrate Polymers, 149: 175-185.
[13] Sharma, G., Sharma, Sh., Kumar, A., Al-Muhtaseb, A., Naushad, M., Ghfar, A.A., Mola, G.T. and Stadler, F.J., 2018. Guar gum and its composites as potential materials for diverse applications: A review. Carbohydrate Polymers, 199: 534-545.
[14] Rezayati-Charani, P., Moradian, M.H. and Saadatnia, M.A., 2018. Sequence analysis using cellulose nanofibers, cationic starch and polyacrylamide in the paper tensile strength. journal of Wood and Forest Science and Technology, 25(3): 73-86. (In Persian).
[15] Irimia-Vladu, M., 2014. Green” electronics: biodegradable and biocompatible materials and devices for sustainable future. Chemical Society Reviews, 43(2): 588-610.
[16] Tatari, A.A. and Shekarian, A., 2014. The Importance of Cellulose Derivatives in the Production of Biodegradable Films for Food Packaging. Journal of Applied Science and Technology, 5(19): 22-31. (In Persian).
[17] Xu, Q., Gao, Y., Qin, M., Wu, K., Fu, Y. and Zhao, J., 2013. Nanocrystalline cellulose from aspen kraft pulp and its application in deinked pulp. International Journal of Biological Macromolecules, 60: 241-247.
[18] Sodeifi, B., Nazarnezhad, N. and Sharifi, H., 2021. Investigation of barrier properties of the coated and treated papers with polycaprolactone/cellulose nanocrystals/ZnO nanoparticles. Journal of food science and technology, 17(107): 91-105. (In Persian).
[19] Laudenslager, M.J., Schiffman, J.D. and Schauer, L.C., 2008. Carboxymethyl Chitosan as a Matrix Material for Platinum, Gold, and Silver Nanoparticles. Biomacromolecules, 9(10): 2682-2685.
[20] Anvar, H. and Sheikhloie Bonab, H., 2021. Synthesis and Evaluation of Physicochemical and Antimicrobial Properties of Bionanocomposites Based on Carboxymethylchitosan Biopolymer - Montmorillonite Nanoclay in the Presence of TiO2 Nanoparticles. Iranian Journal of Food Science and Technology, 18(112): 283-297. (In Persian).
[21] Saurabh, C.K., Gupta, S., Bahadur, J. Mazumder, S., Variyar, P.S. and Sharma, A., 2015. Mechanical and barrier properties of guar gum based nano-composite films. Carbohydrate Polymers, 124: 77-84.
[22] Tripathi, J., Ambolikar, R., Gupta, S., Jain, D., Bahadur, J. and Variyar, P.S., 2019. Methylation of guar gum for improving mechanical and barrier properties of biodegradable packaging films. Scientific Reports, 9(1): 1-9.
[23] Sodeifi, B., Nazarnezhad, N. and Sharifi, S.H., 2019. Investigation of mechanical and optical properties of papers coated with Polycaprolactone - Nanocrystalline cellulose - zinc oxide Nanoparticle. Iranian Journal of Wood and Paper science research, 1(34): 31-46. (In Persian).
[24] Patale, R.L. and Patravale, V.B., 2011. O, N-carboxymethyl chitosan–zinc complex: A novel chitosan complex with enhanced antimicrobial activity. Carbohydrate Polymers, 85(1): 105-110.
[25] Farag, R.K. and Mohamed, R.R., 2013. Synthesis and Characterization of Carboxymethyl Chitosan Nanogels for Swelling Studies and Antimicrobial Activity. Molecules, 18(1): 190-203.
[26] Tang, Y., Zhang, X., Zhao, R., Guo, D. and Zhang, J., 2018. Preparation and properties of chitosan/guar gum/nanocrystalline cellulose nanocomposite films. Carbohydrate Polymers, 197: 128-136.
[27] Sodeifi, B., Nazarnezhad, N. and Sharifi, H., 2019. Investigation of resistance and optical properties of the papers treated with cellulose nanocrystals and zinc oxide nanoparticles. Iranian Journal of Wood and Paper Industries, 3(10): 407-415. (In Persian).
[28] Sodeifi, B., Sharifi, S.H. and Nazarnezhad, N., 2023. Investigation of resistance and optical properties of the papers treated with cellulose nanocrystals and zinc oxide nanoparticles. Iranian Journal of Wood and Paper Science Research, 3(38): 225-236. (In Persian).
[29] Ebrahimpour-Kasmani, J. and Samariha, A., 2023. The Effect of spray coating and freezing of brown liner paper on its physical and mechanical properties. Iranian Journal of Wood and Paper Industries, 1(14): 31-40. (In Persian).
[30] Rao, M.S., Kanatt, S.R. Chawla, S.P. and Sharma, A., 2010. Chitosan and guar gum composite films: Preparation, physical, mechanical and antimicrobial properties. Carbohydrate Polymers, 82(4): 1243-1247.