首页> 外文期刊>Proceedings of the National Academy of Sciences, India, Section A. Physical Sciences >Synthesis, Structure and Reactivity of Cyclometalated Nickel(II) Complexes: A Review and Perspective
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Synthesis, Structure and Reactivity of Cyclometalated Nickel(II) Complexes: A Review and Perspective

机译:的合成、结构和反应性Cyclometalated镍(II)配合物:一个回顾和的角度来看

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Abstract The importance of cyclometalated Ni(II) complex species assumed in catalytic processes related to C–X or C–H activation and functionalisation e.g. in C–C cross coupling reactions stands in stark contrast to the small number of investigations on the synthesis, reactivity, electrochemical and spectroscopic properties of cyclometalated complexes to model catalytically relevant species. This review reveals that the methods to synthesise cyclometalated Ni(II) complexes are rather weakly developed compared with corresponding Pd or Pt derivatives. Furthermore, cyclometalated ligands with their strongly σ-donating carbanionic functions, their chelate effect and often good π-accepting properties are also interesting from the general viewpoint of organometallic coordination chemistry and applications beyond catalysis. The recently reported cyclometalated complexes [Ni(Phbpy)(R)] with the carbanionic Phbpy ? ?=?6-(phenyl-2-ide)-2,2′-bipyridine ligand (R?=?Br, CH 3 , CF 3 ) were described in detail to demonstrate some of the specific properties of such cyclometalated complexes. Further ligand design might allow to synthesise cyclometalated Ni(II) complexes with very interesting properties such as efficient triplet luminescence. What has been achieved in this field with Pt(II) and Pd(II) might be transferred to Ni(II) in the future and some ideas are presented.
机译:文摘cyclometalated镍(II)的重要性复杂的物种在催化过程cx和碳氢键活化有关functionalisation如碳碳交叉耦合小反应形成鲜明对比在合成数量的调查,反应、电化学和光谱cyclometalated复合物模型的属性催化地相关的物种。表明,合成的方法cyclometalated镍(II)配合物相当弱发达而相应的Pd或Pt衍生品。与他们强烈σ捐赠carbanionic功能,其螯合效应和通常很好π接受属性也很有趣有机金属的一般观点配位化学和应用程序催化。复合物(Ni (Phbpy) (R)] carbanionicPhbpy ?配体(R = ?演示的一些具体细节这种cyclometalated复合物的性质。进一步合成配体设计可能允许与非常cyclometalated镍(II)配合物有趣的属性如高效的三联体发光。场与Pt (II)和Pd (II)可能被转移在未来镍(II)和一些想法提出了。

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