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  5. Tuning the balance between dispersion and entropy to design temperature-responsive flexible metal-organic frameworks

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Article
English
2018

Tuning the balance between dispersion and entropy to design temperature-responsive flexible metal-organic frameworks

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0 Files

English
2018
Nature Communications
Vol 9 (1)
DOI: 10.1038/s41467-018-07298-4

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Kresse Georg
Kresse Georg

University of Vienna

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Jelle Wieme
Kurt Lejaeghere
Kresse Georg
+1 more

Abstract

Temperature-responsive flexibility in metal-organic frameworks (MOFs) appeals to the imagination. The ability to transform upon thermal stimuli while retaining a given crystalline topology is desired for specialized sensors and actuators. However, rational design of such shape-memory nanopores is hampered by a lack of knowledge on the nanoscopic interactions governing the observed behavior. Using the prototypical MIL-53(Al) as a starting point, we show that the phase transformation between a narrow-pore and large-pore phase is determined by a delicate balance between dispersion stabilization at low temperatures and entropic effects at higher ones. We present an accurate theoretical framework that allows designing breathing thermo-responsive MOFs, based on many-electron data for the dispersion interactions and density-functional theory entropy contributions. Within an isoreticular series of materials, MIL-53(Al), MIL-53(Al)-FA, DUT-4, DUT-5 and MIL-53(Ga), only MIL-53(Al) and MIL-53(Ga) are proven to switch phases within a realistic temperature range.

How to cite this publication

Jelle Wieme, Kurt Lejaeghere, Kresse Georg, Véronique Van Speybroeck (2018). Tuning the balance between dispersion and entropy to design temperature-responsive flexible metal-organic frameworks. Nature Communications, 9(1), DOI: 10.1038/s41467-018-07298-4.

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Publication Details

Type

Article

Year

2018

Authors

4

Datasets

0

Total Files

0

Language

English

Journal

Nature Communications

DOI

10.1038/s41467-018-07298-4

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