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Identifying the Bottleneck for Heat Transport in Metal–Organic Frameworks.

Authors :
Wieser, Sandro
Kamencek, Tomas
Dürholt, Johannes P.
Schmid, Rochus
Bedoya‐Martínez, Natalia
Zojer, Egbert
Source :
Advanced Theory & Simulations; Jan2021, Vol. 4 Issue 1, p1-7, 7p
Publication Year :
2021

Abstract

Controlling the transport of thermal energy is key to most applications of metal–organic frameworks (MOFs). Analyzing the evolution of the effective local temperature, the interfaces between the metal nodes and the organic linkers are identified as the primary bottlenecks for heat conduction. Consequently, changing the bonding strength at that node–linker interface and the mass of the metal atoms can be exploited to tune the thermal conductivity. This insight is generated employing molecular dynamics simulations in conjunction with advanced, ab initio parameterized force fields. The focus of the present study is on MOF‐5 as a prototypical example of an isoreticular MOF. However, the key findings prevail for different node structures and node–linker bonding chemistries. The presented results lay the foundation for developing detailed structure‐to‐property relationships for thermal transport in MOFs with the goal of devising strategies for the application‐specific optimization of heat conduction. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
25130390
Volume :
4
Issue :
1
Database :
Complementary Index
Journal :
Advanced Theory & Simulations
Publication Type :
Academic Journal
Accession number :
148145796
Full Text :
https://doi.org/10.1002/adts.202000211