A jumping crystal predicted with molecular dynamics and analysed with TLS refinement against powder diffraction data
[摘要] By running a temperature series of molecular dynamics (MD) simulations starting from the known low-temperature phase, the experimentally observed phase transition in a `jumping crystal' was captured, thereby providing a prediction of the unknown crystal structure of the high-temperature phase and clarifying the phase-transition mechanism. The phase transition is accompanied by a discontinuity in two of the unit-cell parameters. The structure of the high-temperature phase is very similar to that of the low-temperature phase. The anisotropic displacement parameters calculated from the MD simulations readily identified libration as the driving force behind the phase transition. Both the predicted crystal structure and the phase-transition mechanism were verified experimentally using TLS (translation, libration, screw) refinement against X-ray powder diffraction data.
[发布日期] [发布机构]
[效力级别] [学科分类] 数学(综合)
[关键词] JUMPING CRYSTALS;MOLECULAR DYNAMICS;PHASE TRANSITIONS;TLS REFINEMENT;XRPD [时效性]