| Literature DB >> 28666220 |
Dipyaman Mohanta1, Koushik Barman2, Sk Jasimuddin3, Md Ahmaruzzaman4.
Abstract
Semiconducting nanomaterials are very important by means of their stability and wide band gap tunability. Visible light induced photoelectrocatalytic water oxidation based on these material are challenging as they have large band gap energies. Herein, we report that MnO doping can activate wide band gap semiconductors like SnO2 towards visible light induced water oxidation. Rutile SnO2 nanoparticles (band gap 3.6eV), usually absorbing at UV region, was capable of harvesting visible light when doped with MnO thereby minimizing the energy requirement for photoelctrocatalytic water splitting. The system was characterized using UV-Vis, TEM and XPS. Photoelectrocatalytic activity was examined by LSV and CPE. The highly stable catalyst showed very good photoelectrocatalytic activity for the oxidation of water under alkaline condition with low overpotential of ∼370mV at 1.0mAcm-2.Entities:
Keywords: Controlled potential electrolysis (CPE); Doping; Glassy carbon electrode; Linear sweep voltammetry (LSV); Photoelectrocatalyst; Water oxidation
Year: 2017 PMID: 28666220 DOI: 10.1016/j.jcis.2017.06.064
Source DB: PubMed Journal: J Colloid Interface Sci ISSN: 0021-9797 Impact factor: 8.128