Surface and Interface Engineering for Nanocellulosic Advanced Materials

Surface and Interface Engineering for Nanocellulosic Advanced Materials
复制标题

纳米纤维素先进材料的表面和界面工程

DOI:
10.1002/adma.202002264
复制
发表时间:
2020-09
期刊:
影响因子:
29.4
通讯作者:
Yano Hiroyuki
Yano Hiroyuki
中科院分区:
材料科学1区
文献类型:
--
作者:
Yang Xianpeng;Biswas Subir Kumar;Han Jingquan;Tanpichai Supachok;Li Mei-Chun;Chen Chuchu;Zhu Sailing;Das Atanu Kumar;Yano Hiroyuki

文献摘要

参考文献

被引文献

相似文献

树木是如何支撑它们直立而巨大的身体的?这种支持来自于被称为纤维素纳米纤维的延伸纤维素链的令人难以置信的坚硬和高度结晶的纳米纤维。因此,纤维素纳米纤维及其结晶部分--纤维素纳米晶,统称为纳米纤维素,是最近被用于人造可持续、环境友好和机械强度高的材料的热门材料。纳米纤维素通常是通过自上而下的过程获得的,在此过程中或之后,原始的表面化学和界面相互作用可能会发生巨大的变化。因此,在制备自下而上工艺的纳米纤维材料时,表面和界面工程是非常重要的。在这里,主要关注有前景的化学改性和非改性方法,旨在从新的方面展望这一热点问题,包括面向纳米纤维的、面向化学的和面向过程的先进纳米纤维材料的表面和界面工程。讨论了纳米纤维素在结构材料、薄膜、纤维、气凝胶和泡沫等功能材料中的增强作用,涉及到定制表面和/或界面工程。虽然一些纳米纤维产品已经进入工业领域,但人们希望在未来几年内会有越来越多的纳米纤维产品进入日常生活。
How do trees support their upright massive bodies? The support comes from the incredibly strong and stiff, and highly crystalline nanoscale fibrils of extended cellulose chains, called cellulose nanofibers. Cellulose nanofibers and their crystalline parts—cellulose nanocrystals, collectively nanocelluloses, are therefore the recent hot materials to incorporate in man‐made sustainable, environmentally sound, and mechanically strong materials. Nanocelluloses are generally obtained through a top‐down process, during or after which the original surface chemistry and interface interactions can be dramatically changed. Therefore, surface and interface engineering are extremely important when nanocellulosic materials with a bottom‐up process are fabricated. Herein, the main focus is on promising chemical modification and nonmodification approaches, aiming to prospect this hot topic from novel aspects, including nanocellulose‐, chemistry‐, and process‐oriented surface and interface engineering for advanced nanocellulosic materials. The reinforcement of nanocelluloses in some functional materials, such as structural materials, films, filaments, aerogels, and foams, is discussed, relating to tailored surface and/or interface engineering. Although some of the nanocellulosic products have already reached the industrial arena, it is hoped that more and more nanocellulose‐based products will become available in everyday life in the next few years.
DOI: 10.1515/hf.2011.183
发表时间: 2012-05
期刊: --
影响因子: --
作者:
Iina Solala;A. Volperts;A. Andersone;T. Dizhbite;Ņ. Mironova-Ulmane;Annikki Vehniaeinen;J. Péré;T. Vuorinen
通讯作者: Iina Solala;A. Volperts;A. Andersone;T. Dizhbite;Ņ. Mironova-Ulmane;Annikki Vehniaeinen;J. Péré;T. Vuorinen
DOI: 10.1021/es504396v
发表时间: 2015-02
影响因子: 11.4
作者:
H. Sehaqui;M. Gálvez;Viola Becatinni;Yi cheng Ng;A. Steinfeld;T. Zimmermann;P. Tingaut
通讯作者: H. Sehaqui;M. Gálvez;Viola Becatinni;Yi cheng Ng;A. Steinfeld;T. Zimmermann;P. Tingaut
DOI: 10.1021/acssuschemeng.5b01611
发表时间: 2016-04
影响因子: 8.4
作者:
Stephen Spinella;C. Samuel;J. Raquez;S. McCallum;R. Gross;P. Dubois
通讯作者: Stephen Spinella;C. Samuel;J. Raquez;S. McCallum;R. Gross;P. Dubois
DOI: 10.1002/9783527689972
发表时间: 2017-05
影响因子: 6.7
作者:
H. Kargarzadeh;I. Ahmad;Sabu Thomas;A. Dufresne
通讯作者: H. Kargarzadeh;I. Ahmad;Sabu Thomas;A. Dufresne
DOI: 10.1039/c8na00238j
发表时间: 2019-03-12
期刊: NANOSCALE ADVANCES
影响因子: 4.7
作者:
Piras, Carmen C.;Fernandez-Prieto, Susana;De Borggraeve, Wim M.
通讯作者: De Borggraeve, Wim M.