光电开关
偶氮苯
材料科学
多孔性
光致变色
吸附
纳米技术
化学
光化学
复合材料
聚合物
有机化学
作者
Simon Krause,Jack D. Evans,Volodymyr Bon,Stefano Crespi,Wojciech Danowski,Wesley R. Browne,Sebastian Ehrling,Francesco Walenszus,Dirk Wallacher,Nico Grimm,Daniel M. Többens,M.S. Weiss,Stefan Kaskel,Ben L. Feringa
标识
DOI:10.1038/s41467-022-29149-z
摘要
Although light is a prominent stimulus for smart materials, the application of photoswitches as light-responsive triggers for phase transitions of porous materials remains poorly explored. Here we incorporate an azobenzene photoswitch in the backbone of a metal-organic framework producing light-induced structural contraction of the porous network in parallel to gas adsorption. Light-stimulation enables non-invasive spatiotemporal control over the mechanical properties of the framework, which ultimately leads to pore contraction and subsequent guest release via negative gas adsorption. The complex mechanism of light-gated breathing is established by a series of in situ diffraction and spectroscopic experiments, supported by quantum mechanical and molecular dynamic simulations. Unexpectedly, this study identifies a novel light-induced deformation mechanism of constrained azobenzene photoswitches relevant to the future design of light-responsive materials.
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