| Literature DB >> 28885769 |
Fei Li1, Fengshou Yu1, Jian Du1, Yong Wang1, Yong Zhu1, Xiaona Li2, Licheng Sun1,3.
Abstract
Water splitting mediated by electron-coupled-proton buffer (ECPB) provides an efficient way to avoid gas mixing by separating oxygen evolution from hydrogen evolution in space and time. Though electrochemical and photoelectrochemcial water oxidation have been incorporated in such a two-step water splitting system, alternative ways to reduce the cost and energy input for decoupling two half-reactions are desired. Herein, we show the feasibility of photocatalytic oxygen evolution in a powder system with BiVO4 as a photocatalyst and polyoxometalate H3 PMo12 O40 as an electron and proton acceptor. The resulting reaction mixture was allowed to be directly used for the subsequent hydrogen evolution with the reduced H3 PMo12 O40 as electron and proton donors. Our system exhibits excellent stability in repeated oxygen and hydrogen evolution, which brings considerable convenience to decoupled water splitting.Entities:
Keywords: electron-coupled-proton buffer; oxygen evolution; photocatalysis; proton reduction; water splitting
Year: 2017 PMID: 28885769 DOI: 10.1002/asia.201701123
Source DB: PubMed Journal: Chem Asian J ISSN: 1861-471X