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一维四聚有机导体中的电荷局域化:(tTTF)ClO的特殊情况

Charge localization in 1D tetramerized organic conductors: the special case of (tTTF)ClO.

作者信息

Frąckowiak Arkadiusz, Świetlik Roman, Jeannin Olivier, Fourmigué Marc, Li Weiwu, Dressel Martin

机构信息

Institute of Molecular Physics, Polish Academy of Sciences, ul. Mariana Smoluchowskiego 17, 60-179 Poznań, Poland.

出版信息

J Phys Condens Matter. 2019 Apr 17;31(15):155601. doi: 10.1088/1361-648X/ab00b5. Epub 2019 Jan 22.

Abstract

We report a detailed structural and spectroscopic study of the 1D 2:1 cation radical salt (tTTF)ClO, where tTTF  =  trimethylenetetrathiafulvalene, which exhibits a semiconductor-semiconductor phase transition at ca. T  =  137 K. Crystal structures are determined above and below the transition; the tTTF molecules in stacks are grouped into weakly interacting tetramers. The reorganization of tTTF stacks is accompanied with an order-disorder transition in anion sublattice. Polarized infrared and Raman spectra of (tTTF)ClO are measured in the broad frequency range as a function of the temperature (10-293 K). The structural and vibrational features are investigated to elucidate the origin of the semiconductor-semiconductor phase transition. We discuss the electron-intramolecular vibration coupling effects in the vibrational spectra of (tTTF)ClO and identify signatures of high- and low-temperature states of charge localization in the tetramerized system. Both the C=C and C-S stretching modes of tTTF give evidence of strong charge distribution fluctuations in conducting stacks for T  >  137 K, which are responsible for the appearance of molecules with charge  +1e, and charge localization in tTTF tetramers for T  <  137 K. The uniqueness of the salt (tTTF)ClO in comparison with other tetramerized 1D systems is discussed.

摘要

我们报道了对一维2:1阳离子自由基盐(tTTF)ClO的详细结构和光谱研究,其中tTTF =三亚甲基四硫富瓦烯,该盐在约T = 137 K时表现出半导体-半导体相变。测定了相变温度上下的晶体结构;堆叠中的tTTF分子聚集成弱相互作用的四聚体。tTTF堆叠的重组伴随着阴离子亚晶格中的有序-无序转变。在10 - 293 K的宽温度范围内测量了(tTTF)ClO的偏振红外和拉曼光谱。研究了结构和振动特征以阐明半导体-半导体相变的起源。我们讨论了(tTTF)ClO振动光谱中的电子-分子内振动耦合效应,并确定了四聚化系统中电荷局域化的高温和低温状态的特征。讨论了盐(tTTF)ClO与其他四聚化一维系统相比的独特性。

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