Mechanical Effects of Elastic Crystals Driven by Natural Sunlight and Force

Author:

Peng Jiang1ORCID,Han Chuchu1,Zhang Xin2,Jia Junhui1,Bai Jiakun1,Zhang Qi1,Wang Yan1,Xue Pengchong3ORCID

Affiliation:

1. Key Laboratory of Magnetic Molecules and Magnetic Information Materials of Ministry of Education & School of Chemistry and Materials Science of Shanxi Normal University 030032 Taiyuan China

2. Aerospace science & industry defense technology research and test center 100039 Beijing China

3. Tianjin key laboratory of structure and performance for functional molecules College of Chemistry Tianjin Normal University 300387 Tianjin China

Abstract

AbstractFlexible crystals that can capture solar energy and convert it into mechanical energy are promising for a wide range of applications such as information storage and actuators, but obtaining them remains a challenge. Herein, an elastic crystal of a barbiturate derivative was found to be an excellent candidate, demonstrating plastic bending behavior under natural sunlight irradiation. 1H NMR and high‐resolution mass spectrum data of microcrystals before and after light irradiation demonstrated that light‐induced [2+2] cycloaddition was the driving force for the photomechanical effects. Interestingly, the crystals retained elastic bending even after light irradiation. This is the first report of flexible crystals that can be driven by natural sunlight and that have both photomechanical properties and elasticity. Furthermore, regulation of the passive light output direction of the crystals and transport of objects by applying mechanical forces and light was demonstrated.

Publisher

Wiley

Subject

General Chemistry,Catalysis

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