Michael Addition Inducing Self‐Assembly to Construct Mechanochromic BP Film

Author:

Xu Xuejing1,Gao Han1,Ren Shuqi1,Zheng Chenglin2,Du Kaiyang1,Zhou Xuan1,Ye Zhicheng3,Zhu Jiliang13ORCID,Wang Jingxia2,Jiang Lei2

Affiliation:

1. Department of Applied Physics Hebei University of Technology Tianjin 300401 China

2. CAS Key Laboratory of Bioinspired Materials and Interfaces Sciences Technique Institute of Physics and Chemistry Chinese Academy of Sciences Beijing 100190 China

3. Fujian Science and Technology Innovation Laboratory for Optoelectronic Information of China Fuzhou 350108 China

Abstract

AbstractLiquid crystalline blue phase (BP) with 3D cubic nanostructure has attracted much interest in the fields of photonic crystals due to their unique optical properties and the ability to control the flow of light. However, there remains a challenge for simultaneously achieving self‐assembly and mechanochromic response of soft 3D cubic nanostructures. Herein, a scalable strategy for the preparation of soft 3D cubic nanostructured films using oligomerization of the Michael addition reaction, which can induce the assembly of double‐twisted cylinders for collective replication, remodeling, recombination, and growth, with a phase transition from BPII to BPI, and to chiral nematic phase, is presented. The prepared BP patterns can be obtained by Michael addition oligomerization reaction and composite mask photopolymerization, which present distinct mechanochromic sensitive due to patterns derived from different BP state, and the pattern can be reversibly erased and recurred by mechanical force and temperature. The average domain size of BPII prepared using this strategy can achieve 96 µm, which is 2.5 times larger than that obtained using the conventional cooling approach. This work provides new insights into the self‐assembly and selective chemochromism of functional materials and devices.

Funder

Natural Science Foundation of Hebei Province

Publisher

Wiley

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