化学
偶氮苯
发色团
异构化
光致变色
辐照
阳光
工作(物理)
光化学
化学物理
光学
分子
物理
热力学
催化作用
有机化学
核物理学
作者
Amymarie K. Bartholomew,Ilana B. Stone,Michael L. Steigerwald,Tristan H. Lambert,Xavier Roy
摘要
Direct conversion of solar energy to mechanical work promises higher efficiency than multistep processes, adding a key tool to the arsenal of energy solutions necessary for our global future. The ideal photomechanical material would convert sunlight into mechanical motion rapidly, without attrition, and proportionally to the stimulus. We describe crystals of a tetrahedral isocyanoazobenzene–copper complex that roll continuously when irradiated with broad spectrum white light, including sunlight. The rolling results from bending and straightening of the crystal due to blue light-driven isomerization of a highly twisted azobenzene ligand. These findings introduce geometrically constrained crystal packing as a strategy for manipulating the electronic properties of chromophores. Furthermore, the continuous, solar-driven motion of the crystals demonstrates direct conversion of solar energy to continuous physical motion using easily accessed molecular systems.
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