Matsui Jennifer K, Lang Simon B, Heitz Drew R, Molander Gary A
Roy and Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, United States.
ACS Catal. 2017 Apr 7;7(4):2563-2575. doi: 10.1021/acscatal.7b00094. Epub 2017 Mar 14.
Photoredox catalysis has experienced a revitalized interest from the synthesis community during the past decade. For example, photoredox/Ni dual catalysis protocols have been developed to overcome several inherent limitations of palladium-catalyzed cross-couplings by invoking a single-electron transmetalation pathway. This Perspective highlights advances made by our laboratory since the inception of the photoredox/Ni cross-coupling of benzyltrifluoroborates with aryl bromides. In addition to broadening the scope of trifluoroborate coupling partners, research using readily oxidized hypervalent silicates as radical precursors that demonstrate functional group compatibility is highlighted. The pursuit of electrophilic coupling partners beyond (hetero)aryl bromides has also led to the incorporation of several new classes of C(sp)-hybridized substrates into light-mediated cross-coupling. Advances to expand the radical toolbox by utilizing feedstock chemicals (e.g., aldehydes) to access radicals that were previously inaccessible from trifluoroborates and silicates are also emphasized. Additionally, several organic photocatalysts have been investigated as replacements for their expensive iridium- and ruthenium-based counterparts. Lastly, the net C-H functionalization of the radical partner in an effort to improve atom economy is presented. An underlying theme in all of these studies is the value of generating radicals in a catalytic manner, rather than stoichiometrically.
在过去十年中,光氧化还原催化在合成领域重新引起了人们的关注。例如,光氧化还原/镍双催化方案已被开发出来,通过引入单电子金属转移途径来克服钯催化交叉偶联的几个固有局限性。这篇综述重点介绍了自苄基三氟硼酸盐与芳基溴化物的光氧化还原/镍交叉偶联开始以来,我们实验室所取得的进展。除了拓宽三氟硼酸盐偶联伙伴的范围外,还重点介绍了使用易于氧化的高价硅酸盐作为自由基前体的研究,这些研究展示了官能团兼容性。对除(杂)芳基溴化物之外的亲电偶联伙伴的探索,也导致了几类新型的C(sp)杂化底物被纳入光介导的交叉偶联反应中。利用原料化学品(如醛)来获取以前无法从三氟硼酸盐和硅酸盐中获得的自由基,从而扩展自由基工具箱的进展也得到了强调。此外,还研究了几种有机光催化剂,以替代昂贵的铱基和钌基光催化剂。最后,介绍了为提高原子经济性而对自由基伙伴进行的净C-H官能化反应。所有这些研究的一个潜在主题是以催化方式而非化学计量方式产生自由基的价值。