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Functional dynamics in framework materials

delete2023-07-14
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S
Simon Krause *
J
Jovana V. Milić *
DOI:10.1038/s42004-023-00945-ydelete
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Abstract

Abstract

En 中文
Dynamic crystalline materials have emerged as a unique category of condensed phase matter that combines crystalline lattice with components that display dynamic behavior in the solid state. This has involved a range of materials incorporating dynamic functional units in the form of stimuli-responsive molecular switches and machines, among others. In particular, it has been possible by relying on framework materials, such as porous molecular frameworks and other hybrid organic-inorganic systems that demonstrated potential for serving as scaffolds for dynamic molecular functions. As functional dynamics increase the level of complexity, the associated phenomena are often overlooked and need to be explored. In this perspective, we discuss a selection of recent developments of dynamic solid-state materials across material classes, outlining opportunities and fundamental and methodological challenges for their advancement toward innovative functionality and applications. Constructing crystalline materials with specific stimuli-responsive dynamics and controlled molecular motion affords opportunities for innovative functionality and applications. Here, the authors discuss recent developments in dynamic solid-state framework materials across a range of material classes, exploring key phenomena associated with such complex dynamics.
Keywords:
METAL-ORGANIC FRAMEWORKS
COORDINATION POLYMERS
MOLECULAR MACHINES
DESIGN
MOTORS
ROTATION
ROTORS
LIGHT
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Journal

Communications Chemistry cover
Communications Chemistry
IF:
6.2
Papers:
2.2K
Citations:
6.4K

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U
University of Fribourg
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4.7K
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M
Max Planck Society
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