Assigning a structural motif using spontaneous molecular dipole orientation in thin films

Spontaneous orientation of molecular dipoles has been observed to produce bulk electric fields, termed 'spontelectric' fields, in a broad variety of molecular solid thin films formed by condensation from the gas phase. Such spontelectric fields are found in cis-methyl formate (cis-MF) and...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2018-11, Vol.20 (46), p.29038-29044
Hauptverfasser: Roman, M, Dunn, A, Taj, S, Keolopile, Z G, Rosu-Finsen, A, Gutowski, M, McCoustra, M R S, Cassidy, A M, Field, D
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Sprache:eng
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Zusammenfassung:Spontaneous orientation of molecular dipoles has been observed to produce bulk electric fields, termed 'spontelectric' fields, in a broad variety of molecular solid thin films formed by condensation from the gas phase. Such spontelectric fields are found in cis-methyl formate (cis-MF) and the present work combines observation of these fields with high quality ab initio studies of cis-MF monomers and dimers. This enables a prediction of the structural motif within the unit cell of the crystalline phase of solid cis-MF, showing it to be a non-polar dimer. Dimer formation at deposition temperatures of >90 K is therefore cited to contribute to the observed collapse of the spontelectric field at these temperatures. This is the first time that such a structural prediction has been made using observations of spontelectric behaviour as a key indicator.
ISSN:1463-9076
1463-9084
DOI:10.1039/c8cp06010j