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Diffuse scattering and the mechanism for the phase transition in triglycine sulphate

机译:硫酸三甘氨酸的扩散散射和相变机理

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摘要

Despite the order/disorder nature of its ferroelectric phase transition, and evidence for the evolution of local order as being important for understanding the transition, no comprehensive diffuse scattering study of the short-range order in triglycine sulphate, (TGS), (NH_2CH _2COOH)_3H_2SO_4 has been undertaken. Diffuse scattering from single crystals is sensitive to two-body correlations, and can act as a probe of local structure, which in a second order phase transition acts as a precursor to the low temperature phase. The role of hydrogen bonding and dipolar interactions in the ferroelectric phase transition in TGS has been a long matter of conjecture. Using neutron and X-ray single crystal diffuse scattering this study shows that hydrogen bond mediated interactions between polarising glycine molecules cause local one-dimensional polarised domains to develop, oriented parallel to the b axis. These domains interact via dipolar interactions, and the three-dimensional ferroelectric order arises. This provides a real-space, interaction-based model for the phase transition in TGS, showing in detail how the local chemistry and physics give rise to the polarised state.
机译:尽管其铁电相变具有有序/无序的性质,并且有证据表明局部有序的演化对于理解该相变非常重要,但尚无关于硫酸三甘氨酸(TGS),(NH_2CH _2COOH )_3H_2SO_4已执行。来自单晶的漫散射对两体相关性敏感,并且可以充当局部结构的探针,该局部结构在二阶相变中充当低温相的前体。氢键和偶极相互作用在TGS的铁电相变中的作用一直是一个长期的猜测。使用中子和X射线单晶扩散散射,这项研究表明,极化甘氨酸分子之间的氢键介导的相互作用导致局部一维极化域的形成,其取向平行于b轴。这些畴通过偶极相互作用相互作用,并且产生三维铁电序。这为TGS中的相变提供了一个基于空间的,基于交互作用的模型,详细显示了局部化学和物理学如何产生极化态。

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