[go: up one dir, main page]

Kim et al., 1999 - Google Patents

Highly donor-doped (110) layered perovskite materials as novel photocatalysts for overall water splitting

Kim et al., 1999

View PDF
Document ID
2742303647926409392
Author
Kim H
Hwang D
Kim Y
Lee J
et al.
Publication year
Publication venue
Chemical Communications

External Links

Snippet

Highly donor-doped (110) layered perovskite materials with a generic composition of AmBmO3m+ 2 (m= 4, 5; A= Ca, Sr, La; B= Nb, Ti) loaded with nickel have been found to be efficient photocatalysts for overall water splitting with quantum yields as high as 23% under …
Continue reading at www.researchgate.net (PDF) (other versions)

Similar Documents

Publication Publication Date Title
Kim et al. Highly donor-doped (110) layered perovskite materials as novel photocatalysts for overall water splitting
Hwang et al. Photocatalytic water splitting over highly donor-doped (110) layered perovskites
Kato et al. Photocatalytic water splitting into H2 and O2 over various tantalate photocatalysts
Hwang et al. Photocatalytic decomposition of water–methanol solution over metal-doped layered perovskites under visible light irradiation
Sun et al. Activating layered perovskite compound Sr2TiO4 via La/N codoping for visible light photocatalytic water splitting
Ahmed et al. A review of metal oxynitrides for photocatalysis
Li et al. Photocatalytic hydrogen production from aqueous methanol solutions under visible light over Na (BixTa1− x) O3 solid-solution
Domen et al. Photodecomposition of water and hydrogen evolution from aqueous methanol solution over novel niobate photocatalysts
Kato et al. Energy structure and photocatalytic activity for water splitting of Sr2 (Ta1− XNbX) 2O7 solid solution
Kim et al. Photocatalytic nanodiodes for visible‐light photocatalysis
Jia et al. BiVO 4–Ru/SrTiO 3: Rh composite Z-scheme photocatalyst for solar water splitting
Ishii et al. H2 evolution from an aqueous methanol solution on SrTiO3 photocatalysts codoped with chromium and tantalum ions under visible light irradiation
Kato et al. Visible-light-response and photocatalytic activities of TiO2 and SrTiO3 photocatalysts codoped with antimony and chromium
Yao et al. Photophysical and Photocatalytic Properties of Ca1-x Bi x V x Mo1-x O4 Solid Solutions
Chen et al. Semiconductor-based photocatalytic hydrogen generation
Zou et al. Photocatalytic hydrogen and oxygen formation under visible light irradiation with M-doped InTaO4 (M= Mn, Fe, Co, Ni and Cu) photocatalysts
Ji et al. Photocatalytic hydrogen production from water–methanol mixtures using N-doped Sr 2 Nb 2 O 7 under visible light irradiation: effects of catalyst structure
Yang et al. Bi2Ga4O9: An undoped single-phase photocatalyst for overall water splitting under visible light
Hirayama et al. Solar-driven photoelectrochemical water oxidation over an n-type lead–titanium oxyfluoride anode
Li et al. Band structure and photocatalytic activities for H2 production of ABi2Nb2O9 (A= Ca, Sr, Ba)
Yoshida et al. Photoluminescence Spectroscopic and Computational Investigation of the Origin of the Visible Light Response of (Ga1− x Zn x)(N1− x O x) Photocatalyst for Overall Water Splitting
Guo et al. Enhancement of visible-light photocatalytic activity of Pt supported potassium niobate (Pt-KNbO3) by up-conversion luminescence agent (Er3+: Y3Al5O12) for hydrogen evolution from aqueous methanol solution
Zhang et al. Water oxidation sites located at the interface of Pt/SrTiO3 for photocatalytic overall water splitting
EP1366811A1 (en) Oxysulfide photocatalyst for use in decomposition of water by visible light
Chen et al. Photocatalytic water splitting on protonated form of layered perovskites K0. 5La0. 5Bi2M2O9 (M= Ta; Nb) by ion-exchange