Rashid Adib Bin, Hoque Md Enamul, Kabir Nahiyan, Rifat Fahim Ferdin, Ishrak Hasin, Alqahtani Abdulrahman, Chowdhury Muhammad E H
Industrial and Production Engineering Department, Military Institute of Science and Technology (MIST), Dhaka 1216, Bangladesh.
Department of Biomedical Engineering, Military Institute of Science and Technology (MIST), Dhaka 1216, Bangladesh.
Polymers (Basel). 2023 Oct 12;15(20):4070. doi: 10.3390/polym15204070.
The exploration of nanocellulose has been aided by rapid nanotechnology and material science breakthroughs, resulting in their emergence as desired biomaterials. Nanocellulose has been thoroughly studied in various disciplines, including renewable energy, electronics, environment, food production, biomedicine, healthcare, and so on. Cellulose nanocrystal (CNC) is a part of the organic crystallization of macromolecular compounds found in bacteria's capsular polysaccharides and plant fibers. Owing to numerous reactive chemical groups on its surface, physical adsorption, surface grating, and chemical vapor deposition can all be used to increase its performance, which is the key reason for its wide range of applications. Cellulose nanocrystals (CNCs) have much potential as suitable matrices and advanced materials, and they have been utilized so far, both in terms of modifying and inventing uses for them. This work reviews CNC's synthesis, properties and various industrial applications. This review has also discussed the widespread applications of CNC as sensor, acoustic insulator, and fire retardant material.
纳米技术和材料科学的迅速突破推动了对纳米纤维素的探索,使其成为理想的生物材料。纳米纤维素已在包括可再生能源、电子、环境、食品生产、生物医学、医疗保健等在内的各个学科中得到深入研究。纤维素纳米晶体(CNC)是细菌荚膜多糖和植物纤维中发现的大分子化合物有机结晶的一部分。由于其表面有许多活性化学基团,物理吸附、表面光栅和化学气相沉积都可用于提高其性能,这是其广泛应用的关键原因。纤维素纳米晶体(CNC)作为合适的基质和先进材料具有很大潜力,到目前为止,人们已在对其进行改性和开发用途方面加以利用。本文综述了CNC的合成、性质及各种工业应用。本综述还讨论了CNC作为传感器、隔音材料和阻燃材料的广泛应用。