Ditopic and Tetratopic 4,2':6',4''-Terpyridines as Structural Motifs in 2D- and 3D-Coordination Assemblies

C. Housecroft, E. Constable
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引用次数: 11

Abstract

We overview the coordination chemistry of ditopic and tetratopic ligands with 4,2':6',4''-terpyridine metal-binding domains and illustrate the adaptability of these divergent ligands as building blocks in 2Dand 3D-coordination networks. The ditopic ligands we discuss are limited to roles as linkers in coordination assemblies, while the tetratopic ligands have the potential to be 4-connecting nodes. Both diand tetratopic ligands are equipped with functionalities, typically alkyloxy chains, the nature of which has a profound effect upon the coordination assembly. Combinations of 4-connecting ligand nodes with metal-linkers lead to both 2Dand 3D-networks, while combinations of 4-connecting metal and ligand nodes give 3D-architectures. We also demonstrate constraint of the coordination assembly to 2-dimensions by depositing ditopic 4,2':6',4''-terpyridine ligands onto Au(111) or Cu(111) platforms with Cu adatoms in the former case; highly ordered ladder assemblies result which are independent of solvent molecules or anions.
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二异位和四异位4,2':6',4' -三联吡啶作为二维和三维配位体的结构基序
我们概述了具有4,2':6',4 " -三吡啶金属结合域的二异位和四异位配体的配位化学,并说明了这些分散配体作为二维和三维配位网络的构建块的适应性。我们讨论的二异位配体仅限于在配位组装中作为连接体的作用,而四异位配体具有成为4连接节点的潜力。双异位配体和四异位配体都具有官能团,通常是烷基氧基链,其性质对配位组装有深远的影响。4连接配体节点与金属连接体的组合可以形成2d和3d网络,而4连接金属和配体节点的组合可以形成3d架构。我们还通过在Au(111)或Cu(111)平台上沉积双位4,2':6',4 " -三吡啶配体来证明配位组装对二维的约束;高度有序的阶梯组装结果独立于溶剂分子或阴离子。
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