Connell Timothy U, Schieber Christine, Silvestri Ilaria Proietti, White Jonathan M, Williams Spencer J, Donnelly Paul S
School of Chemistry and Bio21 Molecular Science and Biotechnology Institute, University of Melbourne , Parkville 3010, Victoria, Australia.
Inorg Chem. 2014 Jul 7;53(13):6503-11. doi: 10.1021/ic5008999. Epub 2014 Jun 20.
The synthesis and characterization of a silver complex of the tripodal triazole ligand, tris(benzyltriazolylmethyl)amine (TBTA, L(1)), that is used as promoter to enhance Cu(I)-catalyzed azide-alkyne cycloaddition (CuAAC) reactions is reported. X-ray analysis of the silver(I) complex with L(1) reveals a dinuclear cation, Ag2(L(1))2, that is essentially isostructural to the copper(I) analogue. While the Ag2(L(1))22 complex provides catalysis for the azide-alkyne cycloaddition process, evidence is presented that this arises from trace copper contamination. The synthesis of silver(I), copper(II), and copper(I) complexes of a second tripodal ligand, tris(2-benzimidazolymethyl)amine (L(2)), which is used to enhance the rate of CuAAC reactions, is also reported. X-ray crystallography of the Cu(I) complex Cu(I)3(L(2))2(CH3CN)23 offers structural insight into previous mechanistic speculation about the role of this ligand in the CuAAC reaction.
报道了三脚架型三唑配体三(苄基三唑基甲基)胺(TBTA,L(1))的银配合物的合成与表征,该配体用作促进剂以增强铜(I)催化的叠氮化物-炔烃环加成反应(CuAAC)。对L(1)的银(I)配合物进行的X射线分析揭示了一种双核阳离子Ag2(L(1))2,它与铜(I)类似物基本同构。虽然Ag2(L(1))22配合物为叠氮化物-炔烃环加成过程提供催化作用,但有证据表明这是由痕量铜污染引起的。还报道了第二种三脚架型配体三(2-苯并咪唑基甲基)胺(L(2))的银(I)、铜(II)和铜(I)配合物的合成,该配体用于提高CuAAC反应的速率。铜(I)配合物Cu(I)3(L(2))2(CH3CN)23的X射线晶体学为先前关于该配体在CuAAC反应中作用的机理推测提供了结构上的见解。