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具有连续Mn(IV)→Mn(III)激发的锰配合物用于多功能光氧化还原催化

Manganese Complexes with Consecutive Mn(IV) → Mn(III) Excitation for Versatile Photoredox Catalysis.

作者信息

Huang Tao, Du Pangang, Cheng Xiuliang, Lin Yu-Mei

机构信息

College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.

出版信息

J Am Chem Soc. 2024 Sep 4;146(35):24515-24525. doi: 10.1021/jacs.4c07084. Epub 2024 Jul 30.

Abstract

Manganese complexes stand out as promising candidates for photocatalyst design, attributed to their eco- and biocompatibility, versatile valence states, and capability for facilitating multiple electronic excitations. However, several intrinsic constraints, such as inadequate visible light response and short excited-state lifetimes, hinder effective photoinduced electron transfer and impede photoredox activation of substrates. To overcome this obstacle, we have developed a class of manganese complexes featuring boron-incorporated -heterocyclic carbene ligands. These complexes enable prolonged excited-state durations encapsulating both Mn(IV) and Mn(III) oxidation stages, with lifetimes reaching microseconds for Mn(IV) and nanoseconds for Mn(III), concurrently exhibiting robust redox capabilities. They efficiently catalyze direct, site-selective cross-couplings between diverse arenes and aryl bromides, at a low catalyst loading of 0.5 mol %. Their proficiency spans an extensive array of substrates including both highly electron-rich and electron-deficient molecules, which underscore the superior performance of these manganese complexes in tackling intricate transformations. Furthermore, the versatility of these complexes is further highlighted by their successful applications in various photochemical transformations, encompassing reductive cross-couplings for the formation of C-P, C-B, C-S and C-Se bonds, alongside oxidative couplings for creating C-N bonds. This study sheds light on the distinctive photoredox properties and the remarkable catalytic flexibility of manganese complexes, highlighting their immense potential to drive progress in photochemical synthesis and green chemistry applications.

摘要

锰配合物因其生态和生物相容性、多样的价态以及促进多种电子激发的能力,成为光催化剂设计中很有前景的候选物。然而,一些内在限制,如可见光响应不足和激发态寿命短,阻碍了有效的光致电子转移,并妨碍了底物的光氧化还原活化。为了克服这一障碍,我们开发了一类具有硼取代杂环卡宾配体的锰配合物。这些配合物能使包含Mn(IV)和Mn(III)氧化态的激发态持续时间延长,Mn(IV)的寿命达到微秒级,Mn(III)的寿命达到纳秒级,同时还表现出强大的氧化还原能力。它们能在0.5 mol%的低催化剂负载量下,高效催化各种芳烃和芳基溴之间的直接、位点选择性交叉偶联反应。其适用性涵盖了大量底物,包括高度富电子和缺电子的分子,这突出了这些锰配合物在处理复杂转化反应方面的卓越性能。此外,这些配合物在各种光化学转化反应中的成功应用进一步凸显了其多功能性,包括用于形成C-P、C-B、C-S和C-Se键的还原交叉偶联反应,以及用于形成C-N键的氧化偶联反应。这项研究揭示了锰配合物独特的光氧化还原性质和显著的催化灵活性,突出了它们在推动光化学合成和绿色化学应用方面的巨大潜力。

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