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A cobalt(ii) spin-crossover compound with partially charged TCNQ radicals and an anomalous conducting behavior

机译:具有部分带电TCNQ自由基和异常导电行为的钴(ii)自旋交联化合物

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摘要

The bifunctional salt [Co(terpy)2](TCNQ)3·CH3CN (terpy = 2,2′;6′,2′′-terpyridine, TCNQ = 7,7,8,8-tetracyanoquino-dimethane) exhibits a high room temperature conductivity of 0.13 S cm–1 and an anomaly in conductivity at ∼190 K as evidenced by variable temperature structural, magnetic and conductivity studies. The anomaly in the conductivity at 190 K has been correlated with the temperature dependent structural breathing and Jahn–Teller distortion of the low spin state of the SCO units, as well as the charge fluctuations and supramolecular π-stacking interactions of partially charged TCNQ radicals. The modular synthetic approach leads to an accessible source of partially charged TCNQ radicals for the facile preparation of bifunctional molecular materials with high electrical conductivity.
机译:双功能盐[Co(terpy)2](TCNQ)3·CH3CN(terpy = 2,2'; 6',2''-terr吡啶,TCNQ = 7,7,8,8-四氰基喹二甲烷)显示出较高的室温电导率为0.13 S cm –1 ,并且在〜190 K时电导率出现异常,这通过可变温度结构,磁学和电导率研究得以证明。 190 K处的电导率异常与温度依赖的结构呼吸和SCO单元低自旋态的Jahn-Teller畸变以及部分带电的TCNQ自由基的电荷涨落和超分子π堆积相互作用相关。模块化合成方法导致可容易获得的部分带电TCNQ自由基来源,用于轻松制备具有高电导率的双功能分子材料。

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