| Literature DB >> 30394730 |
Yitao Dai1,2, Chao Li1, Yanbin Shen3, Shujie Zhu4, Mathias S Hvid2, Lai-Chin Wu5, Jørgen Skibsted2,6, Yongwang Li1, J W Hans Niemantsverdriet1,7, Flemming Besenbacher2, Nina Lock2,6, Ren Su1.
Abstract
Photocatalytic organic conversions involving a hydrogen transfer (HT) step have attracted much attention, but the efficiency and selectivity under visible light irradiation still needs to be significantly enhanced. Here we have developed a noble metal-free, basic-site engineered bismuth oxybromide [Bi24O31Br10(OH)δ] that can accelerate the photocatalytic HT step in both reduction and oxidation reactions, i.e., nitrobenzene to azo/azoxybenzene, quinones to quinols, thiones to thiols, and alcohols to ketones under visible light irradiation and ambient conditions. Remarkably, quantum efficiencies of 42% and 32% for the nitrobenzene reduction can be reached under 410 and 450 nm irradiation, respectively. The Bi24O31Br10(OH)δ photocatalyst also exhibits excellent performance in up-scaling and stability under visible light and even solar irradiation, revealing economic potential for industrial applications.Entities:
Year: 2018 PMID: 30394730 DOI: 10.1021/jacs.8b09796
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419