Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 53 checked references that resolve
resolves10.1038/238037a0Electrochemical Photolysis of Water at a Semiconductor Electrode
resolves10.1021/j100163a032Photocatalytic activity of alkali-metal titanates combined with ruthenium in the decomposition of water
resolves10.1039/FT9949000797Photocatalysts with tunnel structures for decomposition of water. Part 1.—BaTi
<sub>4</sub>
O
<sub>9</sub>
, a pentagonal prism tunnel structure, and its combination with various promoters
resolves10.1039/a704947aDispersion of ruthenium oxide on barium titanates (Ba6Ti17O40,Ba4Ti13O30,BaTi4O9and Ba2Ti9O20)and photocatalytic activity for water decomposition
resolves10.1021/cm960612bPhotocatalytic Decomposition of Water on Spontaneously Hydrated Layered Perovskites
resolves10.1039/a805172kEffects of RuO2 on activity for water decomposition of a RuO2/Na2Ti3O7 photocatalyst with a zigzag layer structure
resolves10.1039/b000187mEffects of RuO2 dispersion on photocatalytic activity for water decomposition of BaTi4O9 with a pentagonal prism tunnel and K2Ti4O9 with a zigzag layer structure
resolves10.1021/j100105a001Photocatalytic decomposition of water and photocatalytic reduction of carbon dioxide over zirconia catalyst
resolves10.1021/jp9919056Water Splitting into H<sub>2</sub> and O<sub>2</sub> on New Sr<sub>2</sub>M<sub>2</sub>O<sub>7</sub> (M = Nb and Ta) Photocatalysts with Layered Perovskite Structures: Factors Affecting the Photocatalytic Activity
resolves10.1246/cl.2006.1052Water Splitting into H2 and O2 over Ba5Nb4O15 Photocatalysts with Layered Perovskite Structure Prepared by Polymerizable Complex Method
resolves10.1023/A:1019082001809Highly efficient decomposition of pure water into H2 and O2 over NaTaO3 photocatalysts
resolves10.1021/jp983590kEffects of Acceptor Doping to KTaO<sub>3</sub> on Photocatalytic Decomposition of Pure H<sub>2</sub>O
resolves10.1246/cl.1999.1207Photocatalytic Decomposition of Pure Water into H2 and O2 over SrTa2O6 Prepared by a Flux Method
resolves10.1021/jp044833dPhotocatalytic Property and Electronic Structure of Triple-Layered Perovskite Tantalates, MCa<sub>2</sub>Ta<sub>3</sub>O<sub>10</sub> (M = Cs, Na, H, and C<sub>6</sub>H<sub>13</sub>NH<sub>3</sub>)
resolves10.1246/cl.2002.1158Photocatalytic Water Splitting over Spontaneously Hydrated Layered Tantalate A2SrTa2O7·<i>n</i>H2O (A=H, K, Rb)
resolves10.1039/b301938cPhotocatalytic properties of layered perovskite tantalates, MLnTa2O7 (M = Cs, Rb, Na, and H; Ln = La, Pr, Nd, and Sm)
resolves10.1246/cl.2006.274Highly Efficient Water Splitting over K3Ta3B2O12 Photocatalyst without Loading Cocatalyst
resolves10.1246/cl.2005.822Photocatalytic Performance of Ba5Ta4O15 to Decomposition of H2O into H2 and O2
resolves10.1021/jp065655mOverall Splitting of Water by RuO<sub>2</sub>-Loaded PbWO<sub>4</sub> Photocatalyst with d<sup>10</sup>s<sup>2</sup>-d<sup>0</sup> Configuration
resolves10.1246/cl.2007.424Photocatalytic Activity of RuO2-loaded Pb<i>x</i>WO4 (<i>x</i> = 0.2–1.1) for Water Decomposition
resolves10.1021/jp010794jNew Photocatalyst Group for Water Decomposition of RuO<sub>2</sub>-Loaded p-Block Metal (In, Sn, and Sb) Oxides with d<sup>10</sup> Configuration
resolves10.1246/cl.2001.868Photocatalytic Activity for Water Decomposition of RuO2-Loaded SrIn2O4 with d10 Configuration
resolves10.1021/jp030020yPhotocatalytic Activity for Water Decomposition of Indates with Octahedrally Coordinated d<sup>10</sup> Configuration. I. Influences of Preparation Conditions on Activity
resolves10.1246/cl.2004.726Photocatalytic Decomposition of H2O into H2 and O2 over Ga2O3 Loaded with NiO
resolves10.1021/jp020539ePhotocatalysis for Water Decomposition by RuO<sub>2</sub>-Dispersed ZnGa<sub>2</sub>O<sub>4</sub> with d<sup>10</sup> Configuration
resolves10.1021/jp0373189Photocatalytic Activity for Water Decomposition of RuO<sub>2</sub>-Dispersed Zn<sub>2</sub>GeO<sub>4</sub> with d<sup>10</sup> Configuration
resolves10.1016/S1010-6030(02)00076-XPhotocatalytic water decomposition by RuO2-loaded antimonates, M2Sb2O7 (M=Ca, Sr), CaSb2O6 and NaSbO3, with d10 configuration
resolves10.1039/b816677nPhotocatalytic water splitting by RuO2-loaded metal oxides and nitrides with d0- and d10 -related electronic configurations
resolves10.1016/S0009-2614(97)00061-4Properties of photocatalysts with tunnel structures: formation of a surface lattice O− radical by the UV irradiation of BaTi4O9 with a pentagonal-prism tunnel structure
resolves10.1039/a701273jReduction and oxidation of BaTi4O9 with a pentagonal prism tunnel structure Effects on radical formation upon UV irradiation and on the activity of RuO2/BaTi4O9 photocatalyst for water decomposition
resolves10.1039/a806734aPhotocatalytic properties of M2Ti6O13 (M=Na, K, Rb, Cs) with rectangular tunnel and layer structures: Behavior of a surface radical produced by UV irradiation and photocatalytic activity for water decomposition
resolves10.1021/jp030021qPhotocatalytic Activity for Water Decomposition of Indates with Octahedrally Coordinated d<sup>10</sup> Configuration. II. Roles of Geometric and Electronic Structures
resolves10.1016/0025-5408(91)90088-4Phosphate niobium bronzes and bronzoids with the MPTBp structure: Na4Nb8P4O32 and Na4−xAxNb7MP4O32 fourth members of the series Ax(PO2)4(NbO3)2m
resolves10.1021/jp0544686Photocatalytic Activity of the RuO<sub>2</sub>-Dispersed Composite p-Block Metal Oxide LiInGeO<sub>4</sub> with d<sup>10</sup>−d<sup>10</sup> Configuration for Water Decomposition
resolves10.1021/ar900099hMolecular Understanding of Organic Solar Cells: The Challenges
resolves10.1103/RevModPhys.64.1045Iterative minimization techniques for<i>ab initio</i>total-energy calculations: molecular dynamics and conjugate gradients
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