Time-dependent solid-state molecular motion and colour tuning of host-guest systems by organic solvents
Article 2020 en
Authors
YY
Yu‐Dong Yang
XJ
Xiaofan Ji
ZL
Zhi-Hao Lu
Abstract
1 min read
Host-guest complex solid state molecular motion is a critical but underexplored phenomenon. In principle, it can be used to control molecular machines that function in the solid state. Here we describe a solid state system that operates on the basis of complexation between an all-hydrocarbon macrocycle, D<sub>4d</sub>-CDMB-8, and perylene. Molecular motion in this solid state machine is induced by exposure to organic solvents or grinding and gives rise to different co-crystalline, mixed crystalline, or amorphous forms. Distinct time-dependent emissive responses are seen for different organic solvents as their respective vapours or when the solid forms are subject to grinding. This temporal feature allows the present D<sub>4d</sub>-CDMB-8⊃perylene-based system to be used as a time-dependent, colour-based 4th dimension response element in pattern-based information codes. This work highlights how dynamic control over solid-state host-guest molecular motion may be used to induce a tuneable temporal response and provide materials with information storage capability.
Anthony W. K. Law, Tsz Shing Cheung, Jianyu Zhang, Nelson L. C. Leung, Ryan T. K. Kwok, Zheng Zhao, Herman H‐Y. Sung, Ian D. Williams, Zijie Qiu, Parvej Alam, Jacky W. Y. Lam, Ben Zhong Tang
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