Simultaneous Improvement of Absorption and Separation Efficiencies of Mo:BiVO4 Photoanodes via Nanopatterned SnO2/Au Hybrid Layers

  • Ju, Sucheol
  • Jun, Junho
  • Huh, Daihong
  • Son, Soomin
  • Sung, Young Hoon
  • ... Lee, Heon
  • 외 3명
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초록

BiVO4 has a thickness limitation because of carrier diffusion length; thus, the light-absorption efficiency is limited. To resolve this issue, we propose coating Mo:BiVO4 on nanopatterned electrodes fabricated via direct-printing technology, which is the most suitable patterning technology for energy-related fields in cases where cost effectiveness is important. We designed two types of nanoelectrodes: nanocone (NC) and reverse NC (RNC). Nanopatterned electrodes mitigate the problems of the short carrier-diffusion length, allowing a larger amount of Mo:BiVO4 to be coated. Also, the Au electrode acts as a back reflector, causing multiple light scattering. The nanopatterned electrode increases the carrier-separation efficiency and the light-absorption efficiency simultaneously owing to the larger amount of Mo:BiVO4 and multiple light scattering. The photocurrent densities of the Au/SnO2/Mo:BiVO4 NC electrode, a corresponding RNC electrode, and a flat electrode were 1.53, 1.35, and 0.44 mA/cm(2), respectively, at 1.23 V-RHE under 1-sun illumination.

키워드

PEC water splittingnanopatterned electrodedirect printingresolve short carrier diffusion lengthmulti light scatteringPHOTOELECTROCHEMICAL WATER OXIDATIONBIVO4 PHOTOANODESCHARGE SEPARATIONLIGHT-ABSORPTIONDOUBLE HYDROXIDEHETEROJUNCTION PHOTOANODESPERFORMANCECATALYSTOXIDEFILM
제목
Simultaneous Improvement of Absorption and Separation Efficiencies of Mo:BiVO4 Photoanodes via Nanopatterned SnO2/Au Hybrid Layers
저자
Ju, SucheolJun, JunhoHuh, DaihongSon, SoominSung, Young HoonPark, JaeminKim, WonjoongBaek, SeunghoLee, Heon
DOI
10.1021/acssuschemeng.9b02452
발행일
2019-10-21
유형
Article
저널명
ACS Sustainable Chemistry & Engineering
7
20
페이지
17000 ~ 17007