-Abe, T. O., Lajide, L., Owolabi, B. J., Adebayo, A. O., Ogunjobi, J. K. and Oluwasina, O. O., 2018. Synthesis and application of carboxy methyl cellulose from Gliricidia sepium and Cola gigantea. Bioresources, 13(3): 6077-6097.
-Aguilera, G., Berry, C. C., West, R. M., Gonzalez-Monterrubio, E., Angulo-Molina, A., Arias-Carrion, A. and Mendez-Rojas, M. A., 2019. Carboxy methyl cellulose coated magnetic nanoparticles transport across a human lung microvascular endothelial cell model of the blood–brain barrier. Nanoscale Advances, 1: 671-685.
-Attarad, A., Zafar, H., Zia, M., Ul Haq, I., Phull, A. R., Sarfraz Ali, J. and Altaf, H., 2016. Synthesis, characterization, applications, and challenges of iron oxide nanoparticles. Nanotechnology, Science and Applications, 9: 49–67.
-Biliuta, G. and Coseri, S., 2016. Magnetic cellulosic materials based on TEMPO- oxidized viscose fibers. Cellulose, 23(6): 3407-3415.
-Cao, Sh. L., Xu, H., Li, X., Lou, W. Y. and Zong, M., 2015. Novel Papain - magnetic nano crystalline cellulose nano – biocatalyst: a highly efficient biocatalyst for dipeptide biosynthesis in deep eutectic solvents. Aspect Sustainable Chemistry Engineering, 3(7): 1589–1599.
-Charani, P. R., Dehghani, M., Afra, E., Blademo, A., Naderi, A. and Lindostrom, T., 2013. Production of microfibrillated cellulose from unbleached kraft pulp of kenaf and Scotch pine and its effect on the properties of hardwood kraft: microfibrillated cellulose paper. Cellulose, 20(5): 2559-2567.
-Faraji, M. and Fadavi, GH., 2013. Applications of magnetic nanoparticles in food science and technology. Iranian Journal of Nutrition Sciences and Food Technology, 8(2): 239-252. (In Persian).
-Gällstedt, M., Brottman, A. and Hedenqvist, M. S., 2005. Packaging-related properties of protein- and chitosan-coated paper. Packaging Technology and Science, 18(4): 161-170.
-Hivechi, A., Bahrami, S. H., Arami, M. and Karimi, A., 2015. Production of Alpha-cellulose and carboxy methyl cellulose from cellulose waste. The 1st national conference on wood and lignocellulosic products, Gonbad Kavous, 10 p.
-Hubbe, M., Ferre, A., Tyagi, P., Yin, Y., Salas, C., Pal, L. and Rojas, O., 2017. Nanocellulose in thin films, coatings, and plies for packaging applications: A review. Bioresources, 12(1): 2143-2233.
-Kaco, H., Waznah, Kh., Jaafar, N. and Gan, Y. S., 2017. Preparation and characterization of Fe3O4 / Regenerated cellulose membrane. Sains Malaysiana, 46(4): 623-628.
-Mahdieh, A., Mahdavian, A., Farhadnezhad, H. and Salehi, H., 2015. Introduction to magnetic nanoparticles, their synthesis methods and their application. Nanoscience, 41: 25-35.
-Marvizadeh, M. M., Oladzadabbasabadi, N., Mohammadi Nafchi, A. and Jokar, M., 2017. Preparation and characterization of bionanocomposite film based on tapioca starch/bovine gelatin/nano rod zinc oxide. International Journal of Biological Macromolecules, 99: 1-7.
-Mashkour, M., Tajvidi, M., Kimura, T., Kimura, F. and Ebrahmi, Gh., 2011. Fabricating unidirectional magnetic papers using permanent magnets to align magnetic nanoparticles covered natural cellulose fibers. Bioresources, 6(4): 4731-4738.
-Mehdikhani, H., Jalali, H., Djafari, R. and Mirshokraee, A., 2017. Production of carboxy methyl cellulose (CMC) from bagasse bleached and deinked of waste paper: Identification and comparison of characteristics. Iranian Journal of Wood and Paper Industries, 7(3): 311-321. (In Persian).
-Mo, Z., Gou, H. and Wang, Y., 2017. Surface modification of graphene oxide sheets on magnetic particles for magnetic paper. Journal of Alloy and Compounds, 695: 2525-2531.
-Nevell, T. P. and Zeronian, S. H., 1987. Cellulose chemistry and its applications: Ellis Horwood Ltd., Chichester, England, 552 p.
-Pineres, O. H., Salcedo, E. C., Herrera, A. P., Sanchez, J. H. and Quintana, C. G., 2020. Magnetic paper from sugarcane bagasse fibers modified with cobalt ferrite nanoparticles. Cellulose, 27: 3903-3918.
-Pinto, E., Aggrey, W. N., Boakye, P., Amenuvor, G., Sokama-Neuyam, Y. A., Fokuo, M. K., Karimaie, H., Sarkodie, K., Adenutsi, C. D., Erzuah, S. and Rockson, M. A. D., 2022. Cellulose processing from biomass and its derivatization into carboxy methyl cellulose: A review. Scientific African, 15: e01078.
-Raghuvanshi, S., Khan, H., Saroha, V., Sharma, H., Gupta, H. S., Kadam, A. and Dutt, D., 2023. Recent advances in biomacromolecule-based nanocomposite films for intelligent food packaging- a review. International Journal of Biological Macromolecules, 253 (7): 127420.
-Rashid, M., Abdul Ghafur, M., Sharafat, K. M., Minami, H., Miah, M. J. and Ahmad, H., 2017. Biocompatible microcrystalline cellulose particles from cotton wool and magnetization via a simple in situ co-precipitation method. Carbohydrate Polymers, 170: 72-79.
-Ren, S., Zhang, X., Dang, L., Lei, T., Teng, Zh., Song, K., Sun, X. and Wu, Q., 2017. Cellulose nanocrystal supported superparamagnetic nano rods with laminated silica shell: synthesis and properties. Journal of Materials Science, 52: 6432–6441.
-Small, A.C. and Johnston, J. H. 2009. Novel hybrid materials of magnetic nanoparticles and cellulose fibers. Journal of Colloid and Interface Science, 331: 122-126.
-Spaldin, N. A., 2010. Magnetic materials, fundamentals and applications. Cambridge University Press, New York, 291 p.