Advanced Engineering Materials and Composites (AEMC) Research Centre, Department of Mechanical and Manufacturing Engineering, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia.
Advanced Engineering Materials and Composites (AEMC) Research Centre, Department of Mechanical and Manufacturing Engineering, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia; Interdisciplinary Research Center for Advanced Materials, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.
Int J Biol Macromol. 2024 Jan;255:128121. doi: 10.1016/j.ijbiomac.2023.128121. Epub 2023 Nov 19.
Material is an inseparable entity for humans to serve different purposes. However, synthetic polymers represent a major category of anthropogenic pollutants with detrimental impacts on natural ecosystems. This escalating environmental issue is characterized by the accumulation of non-biodegradable plastic materials, which pose serious threats to the health of our planet's ecosystem. Cellulose is becoming a focal point for many researchers due to its high availability. It has been used to serve various purposes. Recent scientific advancements have unveiled innovative prospects for the utilization of nanocellulose within the area of advanced science. This comprehensive review investigates deeply into the field of nanocellulose, explaining the methodologies employed in separating nanocellulose from cellulose. It also explains upon two intricately examined applications that emphasize the pivotal role of nanocellulose in nanocomposites. The initial instance pertains to the automotive sector, encompassing cutting-edge applications in electric vehicle (EV) batteries, while the second exemplifies the use of nanocellulose in the field of biomedical applications like otorhinolaryngology, ophthalmology, and wound dressing. This review aims to provide comprehensive information starting from the definitions, identifying the sources of the nanocellulose and its extraction, and ending with the recent applications in the emerging field such as energy storage and biomedical applications.
材料是人类为了不同目的而服务的不可分割的实体。然而,合成聚合物是一类主要的人为污染物,对自然生态系统造成了有害影响。这个日益严重的环境问题的特点是不可生物降解的塑料材料的积累,这对我们星球的生态系统的健康构成了严重威胁。纤维素由于其高可用性而成为许多研究人员关注的焦点。它已经被用于各种用途。最近的科学进步揭示了纳米纤维素在先进科学领域应用的创新前景。这篇综合评论深入探讨了纳米纤维素领域,解释了从纤维素中分离纳米纤维素所采用的方法。它还介绍了两个经过深入研究的应用,强调了纳米纤维素在纳米复合材料中的关键作用。第一个例子涉及汽车领域,包括电动汽车(EV)电池的前沿应用,第二个例子则展示了纳米纤维素在耳鼻喉科学、眼科和伤口敷料等生物医学应用领域的应用。本综述旨在提供从定义开始的全面信息,确定纳米纤维素的来源及其提取,并以新兴领域如储能和生物医学应用中的最新应用结束。