Homogeneous Gold Redox Chemistry: Organometallics, Catalysis, and Beyond.

Homogeneous Gold Redox Chemistry: Organometallics, Catalysis, and Beyond.
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DOI:
10.1016/j.trechm.2020.04.012
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发表时间:
2020-08
影响因子:
15.7
通讯作者:
Toste FD
Toste FD
中科院分区:
化学1区
文献类型:
--
作者:
Huang B;Hu M;Toste FD

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金氧化还原化学具有不同于其他过渡金属的独特反应性和选择性。最近的研究利用应变释放,配体设计,和光化学,以促进否则缓慢的氧化除了Au(I)的配合物。还揭示了从Au(III)络合物还原消除的更多细节。这些发现促进了金氧化还原催化的发展,并将继续为其他过渡金属提供机理见解和灵感。这篇综述强调了金属有机化学的研究如何导致金氧化还原催化,以及在材料科学,生物共轭和放射化学合成中的应用。
Gold redox chemistry holds the promise of unique reactivities and selectivities that are different to other transition metals. Recent studies have utilized strain release, ligand design, and photochemistry to promote the otherwise sluggish oxidative addition to Au(I) complexes. More details on the reductive elimination from Au(III) complexes have also been revealed. These discoveries have facilitated the development of gold redox catalysis and will continue to offer mechanistic insight and inspiration for other transition metals. This review highlights how research in organometallic chemistry has led to gold redox catalysis, as well as applications in materials science, bioconjugation, and radiochemical synthesis.
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