| Literature DB >> 21711804 |
Shaohua Shen1, Xiaobo Chen, Feng Ren, Coleman X Kronawitter, Samuel S Mao, Liejin Guo.
Abstract
A series of Pt-loaded MS/ZnIn2S4 (MS = transition-metal sulfide: Ag2S, SnS, CoS, CuS, NiS, and MnS) photocatalysts was investigated to show various photocatalytic activities depending on different transition-metal sulfides. Thereinto, CoS, NiS, or MnS-loading lowered down the photocatalytic activity of ZnIn2S4, while Ag2S, SnS, or CuS loading enhanced the photocatalytic activity. After loading 1.0 wt.% CuS together with 1.0 wt.% Pt on ZnIn2S4, the activity for H2 evolution was increased by up to 1.6 times, compared to the ZnIn2S4 only loaded with 1.0 wt.% Pt. Here, transition-metal sulfides such as CuS, together with Pt, acted as the dual co-catalysts for the improved photocatalytic performance. This study indicated that the application of transition-metal sulfides as effective co-catalysts opened up a new way to design and prepare high-efficiency and low-cost photocatalysts for solar-hydrogen conversion.Entities:
Year: 2011 PMID: 21711804 PMCID: PMC3211356 DOI: 10.1186/1556-276X-6-290
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Average rates of H. The average rates of H2 evolution over Pt-loaded MS/ZnIn2S4 (MS = metal sulfide: Ag2S, SnS, CoS, CuS, NiS, and MnS) under solar light irradiation in the initial 20-h period.
Figure 2Time courses of H. The time courses of H2 evolution over Pt-loaded MS/ZnIn2S4 (MS = Ag2S, SnS, and CuS) under solar light irradiation.
Average rates of H2 evolution over Pt-loaded MS/ZnIn2S4.
| Photocatalyst | Content of MS | Rate of hydrogen evolution |
|---|---|---|
| ZnIn2S4 | 0 | 126.7 |
| SnS/ZnIn2S4 | 0.5% | 115.4 |
| SnS/ZnIn2S4 | 1.0% | 129.7 |
| SnS/ZnIn2S4 | 2.0% | 127.1 |
| CuS/ZnIn2S4 | 0.5% | 181.4 |
| CuS/ZnIn2S4 | 1.0% | 201.7 |
| CuS/ZnIn2S4 | 2.0% | 139.4 |
The average rates of H2 evolution over Pt-loaded MS/ZnIn2S4 (MS = metal sulfide: SnS and CuS) under solar light irradiation in the initial 20-h period
Figure 3TEM images (A) ZnIn.
Figure 4Schematic illustration of photo-generated charge-transfer process for photocatalytic hydrogen evolution over Pt-CuS/ZnIn. From an aqueous solution containing Na2SO3/Na2S under simulated solar light.