| Literature DB >> 23676701 |
Junkuo Gao1, Shaowen Cao, Qiuling Tay, Yi Liu, Lingmin Yu, Kaiqi Ye, Peter Choon Sze Mun, Yongxin Li, Ganguly Rakesh, Say Chye Joachim Loo, Zhong Chen, Yang Zhao, Can Xue, Qichun Zhang.
Abstract
From atomic level to understand the cluster-size-dependant behavior of dye-sensitized photocatalysts is very important and helpful to design new photocatalytic materials. Although the relationship between the photocatalytic behaviors and particles' size/shape has been widely investigated by theoretical scientists, the experimental evidences are much less. In this manuscript, we successfully synthesized three new ruthenium dye-sensitized polyoxometalates (POM-n, n relate to different size clusters) with different-sized POM clusters. Under visible-light illumination, all three complexes show the stable O2 evolution with the efficient order POM-3 > POM-2 > POM-1. This cluster-size-dependent catalytic behavior could be explained by the different numbers of M = Ot (terminal oxygen) bonds in each individual cluster because it is well-known that Mo = Ot groups are the catalytically active sites for photooxidation reaction. The proposed mechanism of water oxidation for the dye-sensitized POMs is radical reaction process. This research could open up new perspectives for developing new POM-based WOCs.Entities:
Year: 2013 PMID: 23676701 PMCID: PMC4041258 DOI: 10.1038/srep01853
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1The structures of hybrid materials POM-1–3.
Figure 2UV-Vis absorption spectra of Ru(phen)3Cl2, POM-1, POM-2, and POM-3.
Figure 3Kinetics of light induced O2 formation from water oxidation with sodium persulfate as a sacrificial electron acceptor for POM-1–3.
Figure 4Kinetics of light induced O2 formation in the photocatalytic system of POM-3 in the three run test.