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Copper–Oxygen Complexes Revisited: Structures Spectroscopy and Reactivity

机译:铜氧复合物的再研究:结构光谱学和反应性

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摘要

A longstanding research goal has been to understand the nature and role of copper–oxygen intermediates within copper-containing enzymes and abiological catalysts. Synthetic chemistry has played a pivotal role in highlighting the viability of proposed intermediates and expanding the library of known copper–oxygen cores. In addition to the number of new complexes that have been synthesized since the previous reviews on this topic in this journal (Mirica, L. M.; Ottenwaelder, X.; Stack, T. D. P. Chem. Rev. >2004, 104, 1013–1046 and Lewis, E. A.; Tolman, W. B. Chem. Rev. >2004, 104, 1047–1076), the field has seen significant expansion in the (1) range of cores synthesized and characterized, (2) amount of mechanistic work performed, particularly in the area of organic substrate oxidation, and (3) use of computational methods for both the corroboration and prediction of proposed intermediates. The scope of this review has been limited to well-characterized examples of copper–oxygen species but seeks to provide a thorough picture of the spectroscopic characteristics and reactivity trends of the copper–oxygen cores discussed.
机译:长期的研究目标是了解含铜的酶和生物催化剂中铜-氧中间体的性质和作用。合成化学在强调拟议中间体的可行性和扩大已知的铜氧核的文库中起着关键作用。除了本刊先前对此主题的评论以来,已经合成了许多新的复合物(密西根州,密歇根州; Ottenwaelder,X。; Stack,TDP Chem.Rev。> 2004, 104, 1013-1046和Lewis,EA; Tolman,WB Chem。Rev. > 2004, 104,1047-1076),该领域在(1)合成和表征的核的范围内有了显着扩展,( 2)进行了大量的机械工作,特别是在有机底物氧化方面,以及(3)使用计算方法对所建议的中间体进行确证和预测。这篇综述的范围仅限于铜-氧种类的特征充分的例子,但是它试图提供所讨论的铜-氧核的光谱特征和反应性趋势的全面描述。

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