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Singular solid-liquid-gas like phase diagram of neutral-to-ionic phase transition

机译:中性到离子相变的类似固液气样相图

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For the understanding of basic mechanisms in condensed matter, orgainc charge-transfer (CT) complexes are of general interest because of their particular electronic tunability strongly coupled with their structural properties. THus they can refer simulaneously to the chemical physics of organic solid state, by the way of notions like molecular multistability or solid state electron transfer reactions, and to the physics of low-dimensional systems where non-linear structurally-realxed electronic excitations play a tremendous role, but also to the physics of stuructural phase transitions for the cooperativity point of view. This is particularly true for the neutral-to-ionic (N-I) transition which takes place in most of mixed-stack CT complexes [1]. These systems are formed of stacks with alternating electron donor (D) and electron acceptor (A) molecules. The transition manifests itself by a change of the degree of CT and a dimerization distortion with the formation of (D~+A~-) singlet pairs along the stacking axis in the ionic phase [2]. It is known nowadays, that the transoformation can be induced by temperature [3], and/or photo-irradiation [4], but it was pressure which allowed the first observation of the N-I transition [1]. After a brief description of the mechanism of the N-I transition, considering pressure as well as temperature effects, this paper will be focussed on the thermodynamics of its recognized ambassador, the tetrathiafulvalene-p-chloranil (TTF-CA) on the basis of on recent experimental results [6] supported by theoretical consiserations [7].
机译:为了理解凝聚态物质的基本机理,有机高价电荷转移(CT)配合物因其特殊的电子可调性及其结构特性而备受关注。因此,它们可以通过分子多稳定性或固态电子转移反应等概念同时参考有机固态的化学物理学,以及非线性结构实现的电子激发起巨大作用的低维系统的物理学。的作用,也以物理上的结构相变为合作性的观点。对于大多数混合堆叠CT络合物中发生的中性至离子(N-1)跃迁尤其如此[1]。这些系统由具有交替的电子给体(D)和电子受体(A)分子的堆叠形成。这种转变通过CT程度的变化和二聚化畸变而表现出来,并在离子相中沿着堆积轴形成(D〜+ A〜-)单重态对[2]。如今已知,可通过温度[3]和/或光辐照[4]诱导转化,但正是压力使首次观察到了N-1跃迁[1]。在简要介绍了NI转变的机理之后,考虑了压力以及温度影响,本文将基于最近的研究,着重介绍其公认的大使四硫富瓦烯-对氯苯胺(TTF-CA)的热力学。实验结果[6]得到理论界的支持[7]。

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