Recent Advances in Flexible CNC‐Based Chiral Nematic Film Materials

Author:

Zou Xuyang1,Xue Rui1,An Zewei1,Li Hongwei1,Zhang Jiale1,Jiang Yan1,Huang Lijie1,Wu Wei2,Wang Shuangfei1,Hu Guo‐Hua3,Li Robert K.Y.4,Zhao Hui156ORCID

Affiliation:

1. School of Light Industry and Food Engineering Guangxi University Nanning 530004 China

2. Jihua Laboratory Foshan 528200 China

3. Université de Lorraine CNRS LRGP Nancy F‐54001 France

4. Department of Materials Science and Engineering City University of Hong Kong Hong Kong

5. State Key Laboratory of Biocatalysis and Enzyme Engineering School of Life Sciences Hubei University Wuhan China

6. Key Laboratory of Chemistry and Engineering of Forest Products State Ethnic Affairs Commission Guangxi Key Laboratory of Chemistry and Engineering of Forest Products Guangxi Collaborative Innovation Center for Chemistry and Engineering of Forest Products Guangxi Minzu University Nanning 530006 China

Abstract

AbstractCellulose nanocrystal (CNC) is a renewable resource derived from lignocellulosic materials, known for its optical permeability, biocompatibility, and unique self‐assembly properties. Recent years have seen great progresses in cellulose nanocrystal‐based chiral photonic materials. However, due to its inherent brittleness, cellulose nanocrystal shows limitations in the fields of flexible materials, optical sensors and food freshness testing. In order to solve the above limitations, attempts have been made to improve the flexibility of cellulose nanocrystal materials without destroying their structural color. Despite these progresses, a systematic review on them is lacking. This review aims to fill this gap by providing an overview of the main strategies and the latest research findings on the flexibilization of cellulose nanocrystal‐based chiral nematic film materials (FCNM). Specifically, typical substances and methods used for their preparation are summarized. Moreover, different kinds of cellulose nanocrystal‐based composites are compared in terms of flexibility. Finally, potential applications and future challenges of flexible cellulose nanocrystal‐based chiral nematic materials are discussed, inspiring further research in this field.

Funder

Natural Science Foundation of Guangxi Province

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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