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Structural dynamics of a metal-organic framework induced by CO2 migration in its non-uniform porous structure.


ABSTRACT: Stimuli-responsive behaviors of flexible metal-organic frameworks (MOFs) make these materials promising in a wide variety of applications such as gas separation, drug delivery, and molecular sensing. Considerable efforts have been made over the last decade to understand the structural changes of flexible MOFs in response to external stimuli. Uniform pore deformation has been used as the general description. However, recent advances in synthesizing MOFs with non-uniform porous structures, i.e. with multiple types of pores which vary in size, shape, and environment, challenge the adequacy of this description. Here, we demonstrate that the CO2-adsorption-stimulated structural change of a flexible MOF, ZIF-7, is induced by CO2 migration in its non-uniform porous structure rather than by the proactive opening of one type of its guest-hosting pores. Structural dynamics induced by guest migration in non-uniform porous structures is rare among the enormous number of MOFs discovered and detailed characterization is very limited in the literature. The concept presented in this work provides new insights into MOF flexibility.

SUBMITTER: Zhao P 

PROVIDER: S-EPMC6397191 | biostudies-literature | 2019 Mar

REPOSITORIES: biostudies-literature

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Structural dynamics of a metal-organic framework induced by CO<sub>2</sub> migration in its non-uniform porous structure.

Zhao Pu P   Fang Hong H   Mukhopadhyay Sanghamitra S   Li Aurelia A   Rudić Svemir S   McPherson Ian J IJ   Tang Chiu C CC   Fairen-Jimenez David D   Tsang S C Edman SCE   Redfern Simon A T SAT  

Nature communications 20190301 1


Stimuli-responsive behaviors of flexible metal-organic frameworks (MOFs) make these materials promising in a wide variety of applications such as gas separation, drug delivery, and molecular sensing. Considerable efforts have been made over the last decade to understand the structural changes of flexible MOFs in response to external stimuli. Uniform pore deformation has been used as the general description. However, recent advances in synthesizing MOFs with non-uniform porous structures, i.e. wi  ...[more]

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