Azobenzene as a photoswitchable mechanophore

被引:0
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作者
Yiran Li
Bin Xue
Jiahui Yang
Julong Jiang
Jing Liu
Yanyan Zhou
Junsheng Zhang
Mengjiao Wu
Yuan Yuan
Zhenshu Zhu
Zhi Jian Wang
Yulan Chen
Yu Harabuchi
Tasuku Nakajima
Wei Wang
Satoshi Maeda
Jian Ping Gong
Yi Cao
机构
[1] Nanjing University,Collaborative Innovation Center of Advanced Microstructures, National Laboratory of Solid
[2] Nanjing University,State Microstructure, Key Laboratory of Intelligent Optical Sensing and Manipulation, Ministry of Education, Department of Physics
[3] Hokkaido University,Medical School
[4] Jilin University,College of Chemistry
[5] Tianjin University,Tianjin Key Laboratory of Molecular Optoelectronic Science, Department of Chemistry
[6] Hokkaido University,Graduate School of Life Science
[7] Hokkaido University,Institute for Chemical Reaction Design and Discovery (WPI
[8] Hokkaido University,ICReDD)
[9] Nanjing University,Faculty of Advanced Life Science
[10] University of Chinese Academy of Sciences,Institute for Brain Sciences
[11] Nanjing University,Wenzhou Institute
[12] Nanjing University,Chemistry and Biomedicine Innovation Center
来源
Nature Chemistry | 2024年 / 16卷
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摘要
Azobenzene has been widely explored as a photoresponsive element in materials science. Although some studies have investigated the force-induced isomerization of azobenzene, the effect of force on the rupture of azobenzene has not been explored. Here we show that the light-induced structural change of azobenzene can also alter its rupture forces, making it an ideal light-responsive mechanophore. Using single-molecule force spectroscopy and ultrasonication, we found that cis and transpara-azobenzene isomers possess contrasting mechanical properties. Dynamic force spectroscopy experiments and quantum-chemical calculations in which azobenzene regioisomers were pulled from different directions revealed that the distinct rupture forces of the two isomers are due to the pulling direction rather than the energetic difference between the two isomers. These mechanical features of azobenzene can be used to rationally control the macroscopic fracture behaviours of polymer networks by photoillumination. The use of light-induced conformational changes to alter the mechanical response of mechanophores provides an attractive way to engineer polymer networks of light-regulatable mechanical properties.
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页码:446 / 455
页数:9
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