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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Non-symmetric pincer ligands: complexes and applications in catalysis
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Non-symmetric pincer ligands: complexes and applications in catalysis

机译:非对称钳夹配体:络合物及其在催化中的应用

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Pincer ligands have become ubiquitous in organometallic chemistry and homogeneous catalysis. Recently, new varieties of pincer ligands with non-symmetrical backbones and/or ligating groups have been reported and their application in transition metal complexes has been exploited in a variety of catalytic transformations. This non-symmetric approach vastly increases the structural and electronic diversity of this class of ligand. This approach has proven beneficial in a variety of ways, such as the use of a single weakly coordinating moiety, which can dissociate and thereby create a vacant coordination site to increase the catalyst activity. Additionally, this provides further access to chiral ligands and complexes for asymmetric induction. This perspective highlights recent, important examples of non-symmetric pincer ligands, which feature aryl or pyridine backbones, and the synthesis and use of subsequent complexes in catalytic transformations, and discusses the future potential of this type of ligand system.
机译:夹钳配体已在有机金属化学和均相催化中无处不在。近来,已经报道了具有非对称主链和/或连接基团的新型钳夹配体,并且它们在过渡金属络合物中的应用已被用于各种催化转化中。这种非对称方法极大地增加了这类配体的结构和电子多样性。已经证明该方法以多种方式是有益的,例如使用单个弱配位部分,其可以解离并由此产生空的配位点以增加催化剂活性。另外,这为不对称诱导提供了进一步的手性配体和复合物的途径。该观点重点介绍了具有对称性的,具有芳基或吡啶骨架的非对称钳形配体的最新重要实例,以及后续配合物在催化转化中的合成和应用,并讨论了这种配体系统的未来潜力。

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