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吡啶基取代的四硫富瓦烯衍生物的质子化:溶液及质子 - 电子相关电荷转移络合物中的取代基效应

Protonation of pyridyl-substituted TTF derivatives: substituent effects in solution and in the proton-electron correlated charge-transfer complexes.

作者信息

Lee Sang Chul, Ueda Akira, Nakao Akiko, Kumai Reiji, Nakao Hironori, Murakami Youichi, Mori Hatsumi

机构信息

The Institute for Solid State Physics, The University of Tokyo, Kashiwa, Chiba 277-8581 (Japan), Fax: (+81) 4-7136-3410.

出版信息

Chemistry. 2014 Feb 10;20(7):1909-17. doi: 10.1002/chem.201302614. Epub 2014 Jan 15.

Abstract

Protonated pyridyl-substituted tetrathiafulvalene electron-donor molecules (PyH(+)-TTF) showed significant changes in the electron-donating ability and HOMO-LUMO energy gap compared to the neutral analogues and gave a unique N(+)-H⋅⋅⋅N hydrogen-bonded (H-bonded) dimer unit in the proton-electron correlated charge-transfer (CT) complex crystals. We have evaluated these features from the viewpoint of the molecular structure of the PyH(+)-TTF derivatives, that is, the substitution position of the Py group and/or the presence or absence of the ethylenedithio (EDT) group. Among 2-PyH(+)-TTF (1 oH(+)), 3-PyH(+)-TTF (1 mH(+)), 4-PyH(+)-TTF (1 pH(+)), and 4-PyH(+)-EDT-TTF (2 pH(+)) systems, the para-pyridyl-substituted donors 1 pH(+) and 2 pH(+) exhibit more marked changes upon protonation in solution; a larger redshift in the intramolecular CT absorption band and a larger decrease in the electron-donating ability. Furthermore, the EDT system 2 pH(+) has the smallest intramolecular Coulombic repulsion energy. These differences are reasonably interpreted by considering the energy levels and distributions of the HOMO and LUMO obtained by quantum chemical calculations. Such substituent effects related to protonation were also examined by comparing the structure and properties of a new H-bonded CT complex crystal based on 2 pH(+) with those of its 1 pH(+) analogue recently prepared by us: Both of them form a similar type of H-bonded dimer unit, however, its charge distribution as well as the overall molecular arrangement, electronic structure, and conductivity were significantly modulated by the introduction of the EDT group. These results provide a new insight into the structural and electronic features of the PyH(+)-TTF-based proton-electron correlated molecular conductors.

摘要

与中性类似物相比,质子化的吡啶基取代四硫富瓦烯电子给体分子(PyH(+)-TTF)在给电子能力和HOMO-LUMO能隙方面表现出显著变化,并在质子-电子相关电荷转移(CT)复合晶体中给出独特的N(+)-H⋅⋅⋅N氢键(H键)二聚体单元。我们从PyH(+)-TTF衍生物的分子结构角度评估了这些特征,即Py基团的取代位置和/或乙二硫(EDT)基团的有无。在2-PyH(+)-TTF(1 oH(+))、3-PyH(+)-TTF(1 mH(+))、4-PyH(+)-TTF(1 pH(+))和4-PyH(+)-EDT-TTF(2 pH(+))体系中,对位吡啶基取代的给体1 pH(+)和2 pH(+)在溶液中质子化时表现出更显著的变化;分子内CT吸收带出现更大的红移,给电子能力下降更大。此外,EDT体系2 pH(+)具有最小的分子内库仑排斥能。通过考虑量子化学计算得到的HOMO和LUMO的能级和分布,可以合理地解释这些差异。通过比较基于2 pH(+)的新型H键CT复合晶体与其我们最近制备的1 pH(+)类似物的结构和性质,也研究了与质子化相关的这种取代基效应:它们都形成了类似类型的H键二聚体单元,然而,通过引入EDT基团,其电荷分布以及整体分子排列、电子结构和电导率都受到了显著调节。这些结果为基于PyH(+)-TTF的质子-电子相关分子导体的结构和电子特征提供了新的见解。

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