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◆ Advanced materials (Deerfield Beach, Fla.)2026-09-01

Self-Healing and Environmentally Stable Supramolecular Liquid Crystalline Gels for Mechanochromic Optics and Tactile Sensing.

Ye Lin, Chaoyong Liu, Xiaozheng Su, Shichu Yang, Xiaolin Lyu, Zhigang Zou, Zhihao Shen

原始摘要(英文原文)· Original abstract
Mechanochromic materials hold great promise for applications in anti-counterfeiting, information encryption, and intelligent sensing. However, existing materials face long-term challenges in achieving a wide color-changing range, a robust dynamic network, and environmental adaptability. Herein, we constructed a 3D dynamic cross-linked network through the synergistic effect of dipole-π and π-π interactions between liquid crystal molecules and acrylate copolymers. The resulting supramolecular liquid crystalline gel (SLCG) exhibited a wide range of interference color changes and excellent mechanical properties through the dissociation of supramolecular interactions. Meanwhile, the well-designed dynamic network endowed the SLCG with self-recovery, recycling, and self-healing abilities. The SLCG can also effectively shield against adverse environmental effects, enabling stable mechanochromic performance across a broad temperature range and underwater. Subsequently, the SLCG can serve as an intelligent platform for applications in information encryption, on-demand display, and visualized tactile sensing systems. This work paves the way for the development of high-performance mechanochromic materials and their integration into next-generation intelligent applications.
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Self-Healing and Environmentally Stable Supramolecular Liquid Crystalline Gels for Mechanochromic Optics and Tactile Sensing. — 科研速览 Science Skim