Shaanxi Provincial Key Laboratory of Papermaking Technology and Specialty Paper Development, College of Bioresources Chemical and Materials Engineering, Shaanxi University of Science & Technology, Xi'an, Shaanxi 710021, PR China.
Shaanxi Provincial Key Laboratory of Papermaking Technology and Specialty Paper Development, College of Bioresources Chemical and Materials Engineering, Shaanxi University of Science & Technology, Xi'an, Shaanxi 710021, PR China.
Int J Biol Macromol. 2021 Jan 1;166:1586-1616. doi: 10.1016/j.ijbiomac.2020.11.038. Epub 2020 Nov 10.
"Nanocellulose" have captivated the topical sphere of sturdily escalating market for sustainable materials. The review focuses on the comprehensive understanding of the distinct surface chemistry and functionalities pertaining to the renovation of macro-cellulose at nanodimensional scale to provide an intuition of their processing-structure-function prospective. The abundant availability, cost effectiveness and diverse properties associated with plant-based resources have great economical perspective for developing sustainable cellulose nanomaterials. Hence, emphasis has been given on nanocellulose types obtained from plant-based sources. An overarching goal is to provide the recent advancement in the preparation routes of nanocellulose. Considering the excellent shear thinning/thixotropic/gel-like behavior, the review provids an assemblage of publications specifically dealing with its application as rheology modifier with emphasis on its use as bioink for 3D bioprinting for various biomedical applications. Altogether, this review has been oriented in a way to collocate a collective data starting from the historical perspective of cellulose discovery to modern cellulosic chemistry and its renovation as nanocellulose with recent technological hype for broad spanning applications.
“纳米纤维素”吸引了人们的关注,成为了可持续材料市场稳步增长的焦点。本文综述重点在于全面了解独特的表面化学和功能,这些功能涉及将宏观纤维素在纳米尺度上进行改造,以提供对其加工-结构-功能前景的直观理解。基于植物的资源具有丰富的可用性、成本效益和多样化的特性,为开发可持续的纤维素纳米材料提供了巨大的经济前景。因此,本文重点介绍了从植物来源获得的纳米纤维素类型。一个总体目标是提供纳米纤维素制备途径的最新进展。鉴于其出色的剪切稀释/触变/凝胶状行为,本文综述汇集了专门针对其作为流变改性剂应用的出版物,重点介绍了其在各种生物医学应用中的 3D 生物打印中作为生物墨水的用途。总的来说,本综述旨在从纤维素的发现到现代纤维素化学及其作为纳米纤维素的改造的历史角度出发,整理出一系列数据,并结合最近的技术热点,广泛涵盖其应用。