首页|期刊导航|生物质资源与工程(英文)|Decoupling optical and mechanical trade-offs in photonic hydrogels via bioinspired multi-network architecture
Decoupling optical and mechanical trade-offs in photonic hydrogels via bioinspired multi-network architecture
Daoming Wang Zhenming Chen Junheng Pan Hengchong Shi Qingshan Duan Shuangfei Wang Hui Zhao Xuyang Zou Xusheng Wang Guangfu Liao Kejin Jiang Shanshan Dong Han Xu Jianhua Xiong Peng Li
生物质资源与工程(英文)2026,Vol.11Issue(3):68-81,14.
生物质资源与工程(英文)2026,Vol.11Issue(3):68-81,14.DOI:10.1016/j.jobab.2026.100265
Decoupling optical and mechanical trade-offs in photonic hydrogels via bioinspired multi-network architecture
Decoupling optical and mechanical trade-offs in photonic hydrogels via bioinspired multi-network architecture
摘要
关键词
Cellulose nanocrystal/Dynamic structural color/Mechanochromic material/Hydrogel/Intelligent encodingKey words
Cellulose nanocrystal/Dynamic structural color/Mechanochromic material/Hydrogel/Intelligent encoding引用本文复制引用
Daoming Wang,Zhenming Chen,Junheng Pan,Hengchong Shi,Qingshan Duan,Shuangfei Wang,Hui Zhao,Xuyang Zou,Xusheng Wang,Guangfu Liao,Kejin Jiang,Shanshan Dong,Han Xu,Jianhua Xiong,Peng Li..Decoupling optical and mechanical trade-offs in photonic hydrogels via bioinspired multi-network architecture[J].生物质资源与工程(英文),2026,11(3):68-81,14.基金项目
This work was supported by Guangxi Natural Science Foundation Program(No.2025GXNSFFA069012 and GUIKEAB25069342),and State Key Laboratory of Polymer Science and Technology(Open Fund Project No PST-KF2025-24).The Center for Instrumental Analysis of Guangxi University is acknowledged for providing research facilities and resources for the experiments. (No.2025GXNSFFA069012 and GUIKEAB25069342)