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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Dinuclear copper(I) complexes with N-heterocyclic thione and selone ligands: synthesis, characterization, and electrochemical studies
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Dinuclear copper(I) complexes with N-heterocyclic thione and selone ligands: synthesis, characterization, and electrochemical studies

机译:具有N杂环硫酮和硒酮配体的双核铜(I)配合物:合成,表征和电化学研究

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摘要

The synthesis, characterization, and structures of a series of homoleptic and heteroleptic copper(I) complexes supported by N-heterocyclic chalcogenone ligands is reported herein. The quasi-reversible Cu(II/I) reduction potentials of these copper complexes with monodentate (dmit or dmise) and/or bidentate (Bmm(Me), Bsem(Me), Bme(Me), Bsee(Me)) chalcogenone ligands are highly dependent upon the nature and number of the donor groups and can be tuned over a 470 mV range (-369 to 102 mV). Copper-selone complexes have more negative Cu(II/I) reduction potentials relative to their thione analogs by an average of 137 mV, and increasing the number of methylene units linking the heterocyclic rings in the bidentate ligands results in more negative reduction potentials for their copper complexes. This ability to tune the copper reduction potentials over a wide range has potential applications in synthetic and industrial catalysis as well as the understanding of important biological processes such as electron transfer in blue copper proteins and respiration.
机译:本文报道了由N-杂环硫属元素酮配体支撑的一系列均化和杂化铜(I)配合物的合成,表征和结构。这些具有单齿(dmit或dmise)和/或双齿(Bmm(Me),Bsem(Me),Bme(Me),Bsee(Me))硫族酮配体的铜配合物的准可逆Cu(II / I)还原电位它们高度取决于供体基团的性质和数量,可以在470 mV的范围内(-369至102 mV)进行调节。铜-硒配合物相对于其硫酮类似物具有更大的负Cu(II / I)还原电位,平均为137 mV,并且增加连接双齿配体中杂环的亚甲基单元的数量会导致它们的负还原电位更高铜配合物。这种在广泛范围内调节铜还原电位的能力在合成和工业催化以及对重要生物过程(例如蓝色铜蛋白中的电子转移和呼吸作用)的理解中具有潜在的应用。

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