轮烷
材料科学
再生(生物学)
棘轮
皱纹
删除
原位
分子内力
纳米技术
计算机科学
化学
复合材料
细胞生物学
超分子化学
分子
人工智能
立体化学
生物
有机化学
混乱的
程序设计语言
作者
Mengling Yang,Shuai Chen,Zhaoming Zhang,Lin Cheng,Jun Zhao,Ruixue Bai,Wenbin Wang,Wenzhe Gao,Wei Yu,Xuesong Jiang,Xuzhou Yan
标识
DOI:10.1038/s41467-024-49750-8
摘要
Abstract Artificial wrinkles, especially those with responsive erasure/regeneration behaviors have gained extensive interest due to their potential in smart applications. However, current wrinkle modulation methods primarily rely on network rearrangement, causing bottlenecks in in situ wrinkle regeneration. Herein, we report a dually cross-linked network wherein [2]rotaxane cross-link can dissipate stress within the wrinkles through its sliding motion without disrupting the network, and quadruple H-bonding cross-link comparatively highlight the advantages of [2]rotaxane modulation. Acid stimulation dissociates quadruple H-bonding and destructs network, swiftly eliminating the wrinkles. However, the regeneration process necessitates network rearrangement, making in situ recovery unfeasible. By contrast, alkaline stimulation disrupts host–guest recognition, and subsequent intramolecular motion of [2]rotaxane dissipate energy to eliminate wrinkles gradually. The always intact network allows for the in situ recovery of surface microstructures. The responsive behaviors of quadruple H-bonding and mechanical bond are orthogonal, and their combination leads to wrinkles with multiple but accurate responsiveness.
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