Issue 41, 2018

Negative thermal expansion in molecular materials

Abstract

Negative thermal expansion (NTE), whereby lattices contract upon heating, is of considerable interest for its wide applications in many fields. Molecular materials have been widely investigated as catalysts, sensors, etc., which usually endure temperature vibration. NTE can become a substantial means for controlling the coefficients of thermal expansion. Molecular materials possess plentiful structures and can be easily decorated, making them ideal platforms for thermal expansion modification. In this feature article, we provide an overview of the recent developments in utilizing NTE in molecular materials and summarize some mechanisms leading to NTE. The discussion of NTE in molecular materials concerns many factors, including transverse vibration, geometric flexibility, host–guest interactions, spin crossover, molecular packing rearrangement and molecular conformational changes.

Graphical abstract: Negative thermal expansion in molecular materials

Article information

Article type
Feature Article
Submitted
09 Feb 2018
Accepted
16 Apr 2018
First published
17 Apr 2018

Chem. Commun., 2018,54, 5164-5176

Negative thermal expansion in molecular materials

Z. Liu, Q. Gao, J. Chen, J. Deng, K. Lin and X. Xing, Chem. Commun., 2018, 54, 5164 DOI: 10.1039/C8CC01153B

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