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含苯并噻吩并苯并噻吩(BTBT)部分的新型Pt(II)和Pd(II)的π-扩展邻苯二酚配合物:合成、电化学行为及电荷转移性质

New π-extended catecholato complexes of Pt(ii) and Pd(ii) containing a benzothienobenzothiophene (BTBT) moiety: synthesis, electrochemical behavior and charge transfer properties.

作者信息

Tahara Keishiro, Ashihara Yuya, Higashino Toshiki, Ozawa Yoshiki, Kadoya Tomofumi, Sugimoto Kunihisa, Ueda Akira, Mori Hatsumi, Abe Masaaki

机构信息

Department of Material Science and Research Center for New Functional Materials, Graduate School of Material Science, University of Hyogo, 3-2-1, Kouto, Kamigori, Ako, Hyogo 6781297, Japan.

The Institute for Solid State Physics, The University of Tokyo, Kashiwanoha, Kashiwa, Chiba 277-8581, Japan.

出版信息

Dalton Trans. 2019 Jun 7;48(21):7367-7377. doi: 10.1039/c8dt05057k. Epub 2019 Apr 5.

Abstract

Benzothienobenzothiophene (BTBT) and derivatives have received increasing attention as organic field-effect transistor materials and molecular conductors. This report presents the first synthesis of metal complexes involving a BTBT moiety, which was achieved by complexation of 2,2'-bipyridyl complexes of Pt(ii) and Pd(ii) with dihydroxy-substituted BTBT (1) as a new π-extended catecholato ligand (BuBpy = 4,4'-di-tert-butyl-2,2'-dipyridyl). The resulting complexes M(BuBpy)(OBTBT) (M = Pt (3Pt) and Pd (3Pd)) were characterized by UV-vis spectroscopy, density functional theory (DFT) calculations, and cyclic voltammetry. The electron donating ability of BTBT was substantially enhanced upon including two oxygen substituents followed by metal coordination. This enabled chemical oxidation of 3Pt and 3Pd with a mild chemical oxidant (ferrocenium hexafluorophosphate) and formation of the one-electron-oxidized state. While 3Pt and 3Pd exhibited an absorption band originating from a catecholate → Bpy ligand-to-ligand charge transfer transition typical of this class of catecholato complexes, the radical cations exhibited a unique π-π* intramolecular charge transfer (ICT) transition absorption in which the π and π* orbitals were the newly incorporated benzothienothiophene-based donor and semiquinonato-based acceptor, respectively. The BTBT skeleton was electronically divided into two sites by the present chemical modification. The ICT properties of the complexes were found to be modulated by varying the metal ions. These findings offer a new approach to molecular design for (semi)conducting materials using optical properties.

摘要

苯并噻吩并苯并噻吩(BTBT)及其衍生物作为有机场效应晶体管材料和分子导体受到了越来越多的关注。本报告首次合成了含有BTBT部分的金属配合物,该合成是通过将Pt(II)和Pd(II)的2,2'-联吡啶配合物与作为新型π-扩展儿茶酚配体的二羟基取代的BTBT(1)络合实现的(BuBpy = 4,4'-二叔丁基-2,2'-二吡啶)。通过紫外-可见光谱、密度泛函理论(DFT)计算和循环伏安法对所得配合物M(BuBpy)(OBTBT)(M = Pt(3Pt)和Pd(3Pd))进行了表征。在引入两个氧取代基并随后进行金属配位后,BTBT的给电子能力得到了显著增强。这使得能够用温和的化学氧化剂(六氟磷酸二茂铁)对3Pt和3Pd进行化学氧化,并形成单电子氧化态。虽然3Pt和3Pd表现出源于此类儿茶酚配合物典型的儿茶酚→Bpy配体间电荷转移跃迁的吸收带,但自由基阳离子表现出独特的π-π分子内电荷转移(ICT)跃迁吸收,其中π和π轨道分别是新引入的基于苯并噻吩并噻吩的供体和基于半醌的受体。通过目前的化学修饰,BTBT骨架在电子上被分为两个位点。发现配合物的ICT性质可通过改变金属离子来调节。这些发现为利用光学性质设计(半)导电材料的分子提供了一种新方法。

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