Flexibility in MOFs: do scalar and group-theoretical counting rules work?
Marmier, Arnaud; Evans, Kenneth E.
Date: 23 December 2015
Article
Journal
Dalton Transactions: an international journal of inorganic chemistry
Publisher
Royal Society of Chemistry
Publisher DOI
Abstract
We investigate the ability of counting rules drafted from engineering to predict the flexibility or rigidity of bar-and-joint or body-and-joint assemblies representing metal organic frameworks. We show that while scalar counting rules are not reliable, group-theoretical approaches are able to disentangle mechanisms from states of ...
We investigate the ability of counting rules drafted from engineering to predict the flexibility or rigidity of bar-and-joint or body-and-joint assemblies representing metal organic frameworks. We show that while scalar counting rules are not reliable, group-theoretical approaches are able to disentangle mechanisms from states of self-stress and to predict the existence of flexible mechanisms. We give several detailed examples of such calculations, highlighting the fact that behind an abstract exterior they are in fact easy to apply and similar to the method used to obtain molecular vibrations. We also correct a slight misinterpretation of the rigidity of IRMOF-1.
Engineering
Faculty of Environment, Science and Economy
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