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关于13族金属胍基配体体系中配体交换的理论与实验研究。

Theoretical and experimental investigations of ligand exchange in guanidinate ligand systems for group 13 metals.

作者信息

Brazeau Allison L, DiLabio Gino A, Kreisel Kevin A, Monillas Wesley, Yap Glenn P A, Barry Seán T

机构信息

Department of Chemistry, Carleton University, 1125 Colonel By Drive, Ottawa, Ontario, Canada.

出版信息

Dalton Trans. 2007 Aug 14(30):3297-304. doi: 10.1039/b706044k. Epub 2007 Jun 18.

Abstract

The ligand exchange of guanidinate ligands between metal centres can play an important role in guanidinate chemistry, and ligand exchange between aluminium centres will form a dimeric intermediate. The synthesis and characterization of the dimer Me(2)NC(N(i)Pr)(2)Al(2)Cl(4) is reported here: compound crystallizes with a twisted boat conformation of its dimer ring. This compound decomposes to monomers at room temperature over four days, or within 18 hours at 90 degrees C. We undertook a detailed computational characterization of the reaction pathway, which supported the dimer structure and subsequent monomer formation. The ligand exchange route was also exploited for the synthesis of MeC(N(i)Pr)(2)AlCl, EtC(N(i)Pr)(2)AlCl, MeC(N(i)Pr)(2)GaCl, and Me(2)NC(N(i)Pr)(2)GaCl.

摘要

胍基配体在金属中心之间的配体交换在胍基化学中可发挥重要作用,铝中心之间的配体交换将形成二聚中间体。本文报道了二聚体Me(2)NC(N(i)Pr)(2)Al(2)Cl(4)的合成与表征:该化合物以其二聚环的扭曲船式构象结晶。该化合物在室温下四天内分解为单体,或在90℃下18小时内分解。我们对反应途径进行了详细的计算表征,这支持了二聚体结构及随后的单体形成。配体交换途径还被用于合成MeC(N(i)Pr)(2)AlCl、EtC(N(i)Pr)(2)AlCl、MeC(N(i)Pr)(2)GaCl和Me(2)NC(N(i)Pr)(2)GaCl。

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