Institute of Chemical Sciences, Heriot-Watt University, Edinburgh, EH14 4AS, UK.
Phys Chem Chem Phys. 2018 Nov 28;20(46):29038-29044. doi: 10.1039/c8cp06010j.
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.
分子偶极子的自发取向已经被观察到在气相冷凝形成的各种分子固体薄膜中产生体电场,称为“自发极化”场。在顺式-甲酸甲酯(cis-MF)中发现了这种自发极化场,本工作结合了对这些场的观察以及顺式-MF 单体和二聚体的高质量从头算研究。这使得能够预测固态顺式-MF 晶相单元胞内的结构基元,表明它是一个非极性二聚体。因此,在>90 K 的沉积温度下形成二聚体被认为是导致在这些温度下观察到自发极化场坍塌的原因。这是首次使用自发极化行为作为关键指标进行这样的结构预测。