Cellulose Nanostructures as Tunable Substrates for Nanocellulose‐Metal Hybrid Flexible Composites

纳米纤维素 纳米复合材料 材料科学 纳米技术 纤维素 细菌纤维素 生物相容性 灵活性(工程) 复合材料 化学工程 数学 统计 工程类 冶金
作者
Keran Jiao,Wenxin Cao,Wenwen Yuan,Hang Yuan,Jia Zhu,Xiaowu Gao,Sixuan Duan,Ruiqi Yong,Ziwei Zhao,Pengfei Song,Zhong‐Jie Jiang,Yongjie Wang,Jiaqi Zhu
出处
期刊:Collection of Czechoslovak Chemical Communications [Wiley]
卷期号:89 (5) 被引量:6
标识
DOI:10.1002/cplu.202300704
摘要

Abstract Nanocomposite represents the backbone of many industrial fabrication applications and exerts a substantial social impact. Among these composites, metal nanostructures are often employed as the active constituents, thanks to their various chemical and physical properties, which offer the ability to tune the application scenarios in thermal management, energy storage, and biostable materials, respectively. Nanocellulose, as an emerging polymer substrate, possesses unique properties of abundance, mechanical flexibility, environmental friendliness, and biocompatibility. Based on the combination of flexible nanocellulose with specific metal fillers, the essential parameters involving mechanical strength, flexibility, anisotropic thermal resistance, and conductivity can be enhanced. Nowadays, the approach has found extensive applications in thermal management, energy storage, biostable electronic materials, and piezoelectric devices. Therefore, it is essential to thoroughly correlate cellulose nanocomposites’ properties with different metallic fillers. This review summarizes the extraction of nanocellulose and preparation of metal modified cellulose nanocomposites, including their wide and particular applications in modern advanced devices. Moreover, we also discuss the challenges in the synthesis, the emerging designs, and unique structures, promising directions for future research. We wish this review can give a valuable overview of the unique combination and inspire the research directions of the multifunctional nanocomposites using proper cellulose and metallic fillers.
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