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Showing results 1 to 10 of 48 (Search time: 0.0 seconds).

Enhanced photoactivity towards bismuth vanadate water splitting through tantalum doping: An experimental and density functional theory study
  • Kalanur, Shankara S.;
  • Jae Lee, Young;
  • Seo, Hyungtak;
  • Pollet, Bruno G.
  • 2023-11-15
  • Journal of Colloid and Interface Science, Vol.650, pp.94-104
  • Academic Press Inc.
Dual textured BiVO4/Sb:SnO2 heterostructure for enhanced photoelectrochemical Water-splitting
  • Jeong, Yoo Jae;
  • Hwang, Sung Won;
  • Chaikasetsin, Settasit;
  • Han, Hyun Soo;
  • Cho, In Sun
  • 2022-05-01
  • Chemical Engineering Journal, Vol.435
  • Elsevier B.V.
Recent developments in photoelectrochemical water-splitting using WO3/BiVO4 heterojunction photoanode: A reviewoa mark
  • 2018-06-01
  • Materials Science for Energy Technologies, Vol.1, pp.49-62
  • KeAi Communications Co.
Enhancing Solar Water Splitting of Textured BiVO4by Dual Effect of a Plasmonic Silver Nanoshell: Plasmon-Induced Light Absorption and Enhanced Hole Transport
  • Caliskan, Salim;
  • Kim, Jung Kyu;
  • Han, Gill Sang;
  • Qin, Fen;
  • Cho, In Sun;
  • Han, Hyun Soo;
  • Lee, Jung Kun
  • 2020-12-28
  • ACS Applied Energy Materials, Vol.3, pp.11886-11892
  • American Chemical Society
Bismuth vanadate photoanode synthesized by electron-beam evaporation of a single precursor source for enhanced solar water-splitting
  • Hwang, Sung Won;
  • Seo, Dong Hyun;
  • Kim, Jin Un;
  • Lee, Dong Kyu;
  • Choi, Kyoung Soon;
  • Jeon, Cheolho;
  • Yu, Hak Ki;
  • Cho, In Sun
  • 2020-10-30
  • Applied Surface Science, Vol.528
  • Elsevier B.V.
BiVO4/Rh–Ci/HCO3− hetero-/homogeneous dual co-catalyst-decorated photoanode system for photoelectrochemical water oxidation
  • 2023-03-01
  • Journal of Photochemistry and Photobiology A: Chemistry, Vol.436
  • Elsevier B.V.
Multiple ion doping in BiVO4 as an effective strategy of enhancing photoelectrochemical water splitting: A reviewoa mark
  • 2021-01-01
  • Materials Science for Energy Technologies, Vol.4, pp.317-328
  • KeAi Communications Co.
The migration of alkali metal (Na + , Li + , and K + ) ions in single crystalline vanadate nanowires: Rasch-Hinrichsen resistivity
  • Lee, Yejung;
  • Ye, Byeong Uk;
  • Lee, Dong Kyu;
  • Baik, Jeong Min;
  • Yu, Hak Ki;
  • Kim, Myung Hwa
  • 2019-04-01
  • Current Applied Physics, Vol.19, pp.516-520
  • Elsevier B.V.
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