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过渡金属氢化物自由基阳离子。

Transition-Metal Hydride Radical Cations.

机构信息

Department of Chemistry, Columbia University , New York, New York 10027, United States.

Pyrotechnics Technology and Prototyping Division, U.S. Army RDECOM-ARDEC , Picatinny Arsenal, New Jersey 07806, United States.

出版信息

Chem Rev. 2016 Aug 10;116(15):8427-62. doi: 10.1021/acs.chemrev.5b00532. Epub 2016 Feb 1.

Abstract

Transition-metal hydride radical cations (TMHRCs) are involved in a variety of chemical and biochemical reactions, making a more thorough understanding of their properties essential for explaining observed reactivity and for the eventual development of new applications. Generally, these species may be treated as the ones formed by one-electron oxidation of diamagnetic analogues that are neutral or cationic. Despite the importance of TMHRCs, the generally sensitive nature of these complexes has hindered their development. However, over the last four decades, many more TMHRCs have been synthesized, characterized, isolated, or hypothesized as reaction intermediates. This comprehensive review focuses on experimental studies of TMHRCs reported through the year 2014, with an emphasis on isolated and observed species. The methods used for the generation or synthesis of TMHRCs are surveyed, followed by a discussion about the stability of these complexes. The fundamental properties of TMHRCs, especially those pertaining to the M-H bond, are described, followed by a detailed treatment of decomposition pathways. Finally, reactions involving TMHRCs as intermediates are described.

摘要

过渡金属氢化物自由基阳离子(TMHRCs)参与了各种化学和生物化学反应,因此更深入地了解它们的性质对于解释观察到的反应性以及最终开发新的应用至关重要。通常,这些物种可以被视为顺磁类似物经单电子氧化形成的中性或阳离子物种。尽管 TMHRCs 非常重要,但这些配合物的普遍敏感性阻碍了它们的发展。然而,在过去的四十年中,已经合成、表征、分离或假设了更多的 TMHRCs 作为反应中间体。本综述重点关注截至 2014 年报道的 TMHRCs 的实验研究,重点是分离和观察到的物种。调查了用于生成或合成 TMHRCs 的方法,然后讨论了这些配合物的稳定性。描述了 TMHRCs 的基本性质,特别是与 M-H 键有关的性质,然后详细讨论了分解途径。最后,描述了涉及 TMHRCs 作为中间体的反应。

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