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基于金属(镍、金)双(二硫纶)配合物的单组分分子导体中的氢键相互作用。

Hydrogen bonding interactions in single component molecular conductors based on metal (Ni, Au) bis(dithiolene) complexes.

作者信息

Hachem Hadi, Bellec Nathalie, Fourmigué Marc, Lorcy Dominique

机构信息

Univ Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) - UMR 6226, F-35000 Rennes, France.

出版信息

Dalton Trans. 2020 May 14;49(18):6056-6064. doi: 10.1039/d0dt00960a. Epub 2020 Apr 22.

DOI:10.1039/d0dt00960a
PMID:32319488
Abstract

Introduction of hydrogen bonding (HB) interactions in single component conductors derived from nickel and gold bis(dithiolene) complexes is explored with the 2-alkylthio-1,3-thiazole-4,5-dithiolate (RS-tzdt) with R = CHCHOH through the preparation of the neutral [Ni(HOEtS-tzdt)] (closed-shell) and [Au(HOEtS-tzdt)]˙ (radical) complexes. At variance with many other radical gold dithiolene complexes which have a strong tendency to dimerize in the solid state, [Au(HOEtS-tzdt)]˙ crystallizes into uniform stacks interconnected by strong O-HN HB involving the nitrogen atom of the thiazole ring. [Au(HOEtS-tzdt)]˙ is isostructural with its neutral, closed-shell nickel analog [Ni(HOEtS-tzdt)], a rare situation in this metal bis(dithiolene) chemistry. It demonstrates how the strength of the HB directing motif can control the overall structural arrangement to stabilize the same structure despite a different electron count. The nickel complex behaves as a band semiconductor with weak room temperature conductivity (1.6 × 10 S cm), while the gold complex is described as a Mott insulator with a three orders of magnitude improved conductivity (6 × 10 S cm).

摘要

通过制备中性的[Ni(HOEtS - tzdt)](闭壳层)和[Au(HOEtS - tzdt)]˙(自由基)配合物,探索了源自镍和金双(二硫烯)配合物的单组分导体中氢键(HB)相互作用的引入,其中2 - 烷硫基 - 1,3 - 噻唑 - 4,5 - 二硫醇盐(RS - tzdt)的R = CHCHOH。与许多其他在固态中强烈倾向于二聚的自由基金二硫烯配合物不同,[Au(HOEtS - tzdt)]˙结晶成通过涉及噻唑环氮原子的强O - HN HB相互连接的均匀堆叠结构。[Au(HOEtS - tzdt)]˙与其中性闭壳层镍类似物[Ni(HOEtS - tzdt)]同构,这在这种金属双(二硫烯)化学中是一种罕见的情况。它展示了尽管电子数不同,但HB导向基序的强度如何控制整体结构排列以稳定相同的结构。镍配合物表现为具有弱室温电导率(1.6×10 S cm)的带状半导体,而金配合物被描述为电导率提高了三个数量级(6×10 S cm)的莫特绝缘体。

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