Open Access System for Information Sharing

Login Library

 

Thesis
Cited 0 time in webofscience Cited 0 time in scopus
Metadata Downloads

Doping Effects on BiVO4 Photocatalysts and Photoelectrodes for Photocatalytic Water Splitting

Title
Doping Effects on BiVO4 Photocatalysts and Photoelectrodes for Photocatalytic Water Splitting
Authors
강현준
Date Issued
2015
Publisher
포항공과대학교
Abstract
Photocatalytic water splitting is one of the key techniques to harvest and utilize solar energy in hydrogen form. Water oxidation is challenging step to be improved for high efficiency in water splitting process. BiVO4 is one of the best water oxidation photocatalyst, and its characteristics are changeable by metal doping. To investigate doping effects on BiVO4 for photocatalytic water splitting, single dopant doping and dual dopants doping are performed at BiVO4 particulate photocatalysts and photoelectrodes. For single-doping effects, various metal ion-doped BiVO4 was investigated and among the 12 metal ion dopants, it was found that doping of only W and Mo dramatically enhanced the water photooxidation activity of a bare BiVO4, with Mo showing the highest improvement by a factor of ca. 6. Thus, for ca. 1 μm thick BiVO4 and 2at% (W or Mo)-doped BiVO4 photoanodes were fabricated onto transparent conducting substrate by metal- organic decomposition/ spin-coating method. Under simulated 1 sun (air mass 1.5G, 100 mw.cm-2) and at 1.23 VRHE, the highest photocurrent density (JPH) ~2.38 mA.cm-2 was achieved for Mo-doping followed by W-doping (JPH ~1.98 mA.cm-2), whereas undoped BiVO4 gave JPH ~0.42 mA.cm-2 The photoelectrochemical water oxidation activity of W- and Mo- doped BiVO4 photoanodes corresponded to the incident to photon current conversion efficiency (IPCE) of ~35% and ~40%, respectively. The electrochemical impedance spectroscopy and the Mott-Schottky analysis indicated a positive flat band shift of ca. 30 mV, more than 2 ~3 times carriers’ concentration, and 3-4 fold reduced charge transfer resistance for (W or Mo)-doped BiVO4 relative to undoped BiVO4. Electronic structure calculations revealed that both W and Mo were shallow donors, and Mo-doping generated superior conductivity than W-doping. Photo-oxidation activity of water on BiVO4 photoanodes (undoped
URI
http://postech.dcollection.net/jsp/common/DcLoOrgPer.jsp?sItemId=000002064231
https://oasis.postech.ac.kr/handle/2014.oak/93633
Article Type
Thesis
Files in This Item:
There are no files associated with this item.

qr_code

  • mendeley

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Views & Downloads

Browse