Frustrated flexibility in metal-organic frameworks

Author:

Pallach RomanORCID,Keupp JulianORCID,Terlinden Kai,Frentzel-Beyme LouisORCID,Kloß MarvinORCID,Machalica Andrea,Kotschy JuliaORCID,Vasa Suresh K.,Chater Philip A.ORCID,Sternemann ChristianORCID,Wharmby Michael T.ORCID,Linser RasmusORCID,Schmid RochusORCID,Henke SebastianORCID

Abstract

AbstractStimuli-responsive flexible metal-organic frameworks (MOFs) remain at the forefront of porous materials research due to their enormous potential for various technological applications. Here, we introduce the concept of frustrated flexibility in MOFs, which arises from an incompatibility of intra-framework dispersion forces with the geometrical constraints of the inorganic building units. Controlled by appropriate linker functionalization with dispersion energy donating alkoxy groups, this approach results in a series of MOFs exhibiting a new type of guest- and temperature-responsive structural flexibility characterized by reversible loss and recovery of crystalline order under full retention of framework connectivity and topology. The stimuli-dependent phase change of the frustrated MOFs involves non-correlated deformations of their inorganic building unit, as probed by a combination of global and local structure techniques together with computer simulations. Frustrated flexibility may be a common phenomenon in MOF structures, which are commonly regarded as rigid, and thus may be of crucial importance for the performance of these materials in various applications.

Funder

Deutsche Forschungsgemeinschaft

EC | Horizon 2020 Framework Programme

Technische Universität Dortmund Fonds der Chemischen Industrie

Publisher

Springer Science and Business Media LLC

Subject

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

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