Cooperative light-induced breathing of soft porous crystals via azobenzene buckling

Author:

Krause SimonORCID,Evans Jack D.ORCID,Bon VolodymyrORCID,Crespi StefanoORCID,Danowski Wojciech,Browne Wesley R.ORCID,Ehrling SebastianORCID,Walenszus Francesco,Wallacher DirkORCID,Grimm Nico,Többens Daniel M.,Weiss Manfred S.ORCID,Kaskel StefanORCID,Feringa Ben L.ORCID

Abstract

AbstractAlthough 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.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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