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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Cyanoferrocenes as redox-active metalloligands for coordination-driven self-assembly
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Cyanoferrocenes as redox-active metalloligands for coordination-driven self-assembly

机译:Cyanoferrocenes作为氧化还原活性的金属溶胶配体,用于协调驱动的自组装

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摘要

Ferrocene-based Lewis bases have found utility as metalloligands in a wide variety of applications. The coordination chemistry of cyanoferrocenes however, is underexplored. Herein, we describe a new synthetic protocol for the generation of cyanoferrocenes. The coordination chemistry of these metalloligands to [Cu(NCMe)(4)][PF6], [(PPh3)(2)Cu(NCMe)(2)][PF6] and [(dppf) Cu(NCMe)(2)][PF6] salts has been explored, providing crystallographic evidence of cluster and polymeric forms of 1,1'- and 1,2-dicyanoferrocene complexes. The stability of the complexes and ligand dissociation were found to be strongly solvent-dependent.
机译:基于Ferrocene的Lewis基地在各种应用中找到了金属溶胶的实用性。 然而,氰基苄烯烯的配位化学是望而面的。 在此,我们描述了一种用于产生氰基蛋白酶的新的合成方案。 这些金属棒配体的配位化学[Cu(NCME)(4)] [PF6],[(PPH3)(2)Cu(NCME)(2)] [PF6]和[(DPPF)Cu(NCME)(2) [PF6]已经探索了盐,提供了簇的结晶证据和聚合物形式的1,1'-和1,2-二氰芴络合物。 发现复合物和配体解离的稳定性是强烈的溶剂依赖性。

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