Xi Zi-Wei, Yang Lei, Wang Dan-Yan, Feng Chuan-Wei, Qin Yufeng, Shen Yong-Miao, Pu Chaodan, Peng Xiaogang
Department of Chemistry, Key Laboratory of Surface & Interface Science of Polymer Materials of Zhejiang Province, Zhejiang Sci-Tech University, Hangzhou, Zhejiang 310018, China.
Center for Chemistry of Novel & High-Performance Materials, Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang 310027, PR China.
J Org Chem. 2021 Feb 5;86(3):2474-2488. doi: 10.1021/acs.joc.0c02627. Epub 2021 Jan 8.
We present an efficient and versatile visible light-driven methodology to transform aryl aldehydes and ketones chemoselectively either to alcohols or to pinacol products with CdSe/CdS core/shell quantum dots as photocatalysts. Thiophenols were used as proton and hydrogen atom donors and as hole traps for the excited quantum dots (QDs) in these reactions. The two products can be switched from one to the other simply by changing the amount of thiophenol in the reaction system. The core/shell QD catalysts are highly efficient with a turn over number (TON) larger than 4 × 10 and 4 × 10 for the reduction to alcohol and pinacol formation, respectively, and are very stable so that they can be recycled for at least 10 times in the reactions without significant loss of catalytic activity. The additional advantages of this method include good functional group tolerance, mild reaction conditions, the allowance of selectively reducing aldehydes in the presence of ketones, and easiness for large scale reactions. Reaction mechanisms were studied by quenching experiments and a radical capture experiment, and the reasons for the switchover of the reaction pathways upon the change of reaction conditions are provided.
我们展示了一种高效且通用的可见光驱动方法,以CdSe/CdS核壳量子点作为光催化剂,将芳基醛和酮化学选择性地转化为醇或频哪醇产物。在这些反应中,苯硫酚用作质子和氢原子供体以及激发量子点(QDs)的空穴捕获剂。只需改变反应体系中苯硫酚的量,这两种产物就可以相互转换。核壳量子点催化剂效率很高,用于还原为醇和形成频哪醇时的周转数(TON)分别大于4×10和4×10,并且非常稳定,因此它们可以在反应中循环使用至少10次而催化活性无明显损失。该方法的其他优点包括良好的官能团耐受性、温和的反应条件、能够在酮存在下选择性还原醛以及易于进行大规模反应。通过猝灭实验和自由基捕获实验研究了反应机理,并给出了反应条件改变时反应途径转换的原因。