材料科学
执行机构
压电
光电子学
流离失所(心理学)
陶瓷
热的
复合材料
钙钛矿(结构)
结晶学
心理治疗师
化学
气象学
工程类
物理
电气工程
心理学
作者
Xingjie Lv,Shuai Dong,Xin Huang,Bo Cao,Shouxin Zeng,Yaojin Wang,Tom Wu,Lang Chen,Junling Wang,Guoliang Yuan,Jun‐Ming Liu
标识
DOI:10.1002/adom.202100837
摘要
Abstract It is well known that a material may be strained by mechanical, thermal, electric, magnetic, and light stimuli, and this effect has been extensively utilized in industries. However, the observed photostrictive effect usually occurs in the very thin surface layer and the photostriction of most bulk materials has been too small to be applied in a device until now. Here, a giant bulk photostriction is achieved, evidenced by the measured linear strain ε ≈ 0.72–0.43% for MAPbI 3 single crystal plates of 0.05–0.5 mm in thickness under the 532 nm illumination. More importantly, the MAPbI 3 single crystals also exhibit accurate photomechanical actuation functionality and the actuator can precisely adjust the displacement from hundreds of pm to tens of μm or the angle of a hard mirror from ≈10 −6 to 0.2 degree. The present work not only unveils the huge bulk photostriction in lead halide perovskite single crystals but also demonstrates a wireless photomechanical actuator which is much simpler and smaller than conventional piezoelectric actuators.
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