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具有优异π酸性和π碱性的大环金属三核配合物的合理设计。

Rational design of macrometallocyclic trinuclear complexes with superior pi-acidity and pi-basicity.

作者信息

Tekarli Sammer M, Cundari Thomas R, Omary Mohammad A

机构信息

Department of Chemistry, Center for Advanced Scientific Computing and Modeling, University of North Texas, Denton, Texas 76203, USA.

出版信息

J Am Chem Soc. 2008 Feb 6;130(5):1669-75. doi: 10.1021/ja076527u. Epub 2008 Jan 15.

Abstract

Density functional theory (DFT) has been used to assess the pi-acidity and pi-basicity of metal-organic trimetallic macromolecular complexes of the type [M(mu-L)]3, where M = Cu, Ag, or Au and L = carbeniate, imidazolate, pyridiniate, pyrazolate, or triazolate. The organic compounds benzene, triazole, imidazole, pyrazole, and pyridine were also modeled, and their substituent effects were compared to those of the coinage metal trimers. Our results, based on molecular electrostatic potential surfaces and positive charge attraction energy curves, indicate that the metal-organic macromolecules show superior pi-acidity and -basicity compared to their organic counterparts. Moreover, the metal-organic cyclic trimers are found to exhibit pi-acidity and -basicity that can be systematically tuned both coarsely and finely by judicious variation of the bridging ligand (relative pi-basicity imidazolate > pyridiniate > carbeniate > pyrazolate > triazolate), metal (relative pi-basicity Au > Cu > Ag), and ligand substituents. These computational findings are thus guiding experimental efforts to rationally design novel [M(mu-L)]3 materials for applications in molecular electronic devices that include metal-organic field-effect transistors and light-emitting diodes.

摘要

密度泛函理论(DFT)已被用于评估[M(μ-L)]₃型金属有机三金属大分子配合物的π酸性和π碱性,其中M = Cu、Ag或Au,L = 碳烯酸盐、咪唑酸盐、吡啶盐、吡唑酸盐或三唑酸盐。还对有机化合物苯、三唑、咪唑、吡唑和吡啶进行了建模,并将它们的取代基效应与货币金属三聚体的取代基效应进行了比较。我们基于分子静电势表面和正电荷吸引能曲线的结果表明,与有机对应物相比,金属有机大分子表现出优异的π酸性和π碱性。此外,发现金属有机环状三聚体表现出的π酸性和π碱性可以通过明智地改变桥连配体(相对π碱性 咪唑酸盐>吡啶盐>碳烯酸盐>吡唑酸盐>三唑酸盐)、金属(相对π碱性 Au>Cu>Ag)和配体取代基进行粗略和精细的系统调节。因此,这些计算结果正在指导实验工作,以合理设计新型[M(μ-L)]₃材料,用于包括金属有机场效应晶体管和发光二极管在内的分子电子器件应用。

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