纤维素
纤维素乙醇
材料科学
分子间力
韧性
氢键
共价键
高分子科学
复合材料
有机化学
分子
化学
作者
Zhiping Su,Le Yu,Lan Cui,Guowen Zhou,Xiaoqian Zhang,Xueqing Qiu,Chaoji Chen,Xiaohui Wang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-11-03
卷期号:17 (21): 21420-21431
被引量:67
标识
DOI:10.1021/acsnano.3c06175
摘要
Its excellent renewability and biodegradability make cellulose an attractive resource to prepare fossil-based plastic alternatives. However, cellulose itself exhibits strong intermolecular hydrogen bond (H-bond) interactions, significantly restricting the mobility of cellulose chains, thus leading to poor thermo-processing performance. Here, we reconstructed the intermolecular interactions of cellulose chains via replacing the original H-bonds with dynamic covalent bonds. By this, cellulose can be easily thermo-processed into a cellulosic plastic under mild conditions (70 °C). Through adjusting the chemical structure of dynamic covalent networks, the cellulosic plastic shows tunable mechanical strength (3.0-33.5 MPa) and toughness (43-321 kJ m-2). The cellulosic plastic also exhibits excellent resistance to water, organic solvent, acid solution, alkali solution, and high temperature (>400 °C). Moreover, it owns good chemical and biological degradability and recyclability. This work provides an effective method to develop high-performance cellulosic plastics for fossil-based plastic substitution.
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