| Literature DB >> 26332275 |
Rengui Li1, Xiaoping Tao1,2, Ruotian Chen1,3, Fengtao Fan1, Can Li4.
Abstract
Spatial separation of reduction sites and oxidation sites to inhibit the recombination of photogenerated electrons and holes plays a vital role in improving the efficiency of photocatalyst systems. It is very challenging to rationally deposit cocatalysts on the right facets (sites), namely, the reduction cocatalyst on the reduction facets (sites) and the oxidation cocatalyst on the oxidation facets (sites). Herein, we report that the reduction and oxidation cocatalysts can be selectively constructed on the different facets of p-type Cu2 O crystals with anisotropic facets, but not on the Cu2 O crystal with isotropic facets. The deposition of dual cocatalysts on the different facets resulted in a remarkable synergetic effect in the photocatalytic performance, which could be attributed to the spatial separation of the photogenerated charges between facets. Our work reports an instructive strategy for constructing high-efficiency photocatalyst systems for solar energy conversion.Entities:
Keywords: charge separation; cuprous oxide; photocatalysis; selective deposition; synergetic effects
Year: 2015 PMID: 26332275 DOI: 10.1002/chem.201502562
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236