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 44 checked references that resolve
resolves10.1557/JMR.1997.0090Preparation of TiO<sub>2</sub>-based powders with high photocatalytic activities
resolves10.1021/j100151a001Titanium dioxide aerogels for photocatalytic decontamination of aquatic environments
resolves10.1016/S0926-860X(98)00255-5Iron-doped titania semiconductor powders prepared by a sol–gel method. Part I: synthesis and characterization
resolves10.1007/BF01154116Bulk and surface characterization of powder iron-doped titania photocatalysts
resolves10.1021/j100108a014Effects of altervalent cation doping of titania on its performance as a photocatalyst for water cleavage
resolves10.1021/j100334a044Activity of chromium-ion-doped titania for the dinitrogen photoreduction to ammonia and for the phenol photodegradation
resolves10.1007/BF00811803Surface properties of iron-titania photocatalysts employed for 4-nitrophenol photodegradation in aqueous TiO2 dispersion
resolves10.1021/ja00388a019Surface-modified photochemistry. Preparation of silica-supported triiron dodecacarbonyl via irradiation of absorbed iron pentacarbonyl
resolves10.1039/FT9928800377Characterisation of iron/titanium oxide photocatalysts. Part 1.—Structural and magnetic studies
resolves10.1016/0360-3199(82)90002-7Conversion of solar energy to chemical energy by photoassisted processes—II. Influence of the iron content on the activity of doped titanium dioxide catalysts for ammonia photoproduction☆
resolves10.1016/0021-9517(89)90105-XImportance of the anatase-rutile phase transition and titania grain enlargement in the strong metal-support interaction phenomenon in Fe/TiO2 catalysts
resolves10.1016/S0360-0564(08)60134-0The Binding and Activation of Carbon Monoxide, Carbon Dioxide, and Nitric Oxide and Their Homogeneously Catalyzed Reactions
resolves10.1021/es00023a011Photodissolution of iron oxides. 3. Interplay of photochemical and thermal processes in maghemite/carboxylic acid systems
resolves10.1139/v92-316Photodissolution of iron oxides. IV. A comparative study on the photodissolution of hematite, magnetite, and maghemite in EDTA media
resolves10.1021/la00056a014Light-induced dissolution of hematite in the presence of oxalate. A case study
resolves10.1139/v90-114Photodissolution of iron oxides II: The lack of efficiency of thiocyanate
resolves10.1021/j100354a021Photocatalytic oxidation of sulfur dioxide in aqueous suspensions of .alpha.-iron oxide (Fe2O3)
resolves10.1021/es00151a015Photoinduced reductive dissolution of .alpha.-iron oxide (.alpha.-Fe2O3) by bisulfite
resolves10.1021/es00039a010Photochemical reactions involved in the total mineralization of 2,4-D by iron(3+)/hydrogen peroxide/UV
resolves10.1021/es00026a011Hydroxyl radical formation in aqueous reactions (pH 3-8) of iron(II) with hydrogen peroxide: the photo-Fenton reaction
resolves10.1021/cr00035a013Photocatalysis on TiO2 Surfaces: Principles, Mechanisms, and Selected Results
resolves10.1021/ic00188a006Formation of trans-M(O)2(CO)4 (M = Mo and W): intermediates in the photooxidation of matrix-isolated M(CO)6
resolves10.1021/ic00221a008Peroxo and dioxo metal carbonyl intermediates in the photooxidation of matrix-isolated M(CO)6 (M = Cr, Mo, W) in the presence of dioxygen: a vibrational spectroscopic study using oxygen-18
resolves10.1039/cs9942300309Photooxidation reactions of transition metal carbonyls in low-temperature matrices
resolves10.1021/es00029a022Formation of hydrogen peroxide and depletion of oxalic acid in atmospheric water by photolysis of iron(III)-oxalato complexes
resolves10.1016/1352-2310(94)90270-4Photochemical decomposition of oxalic, glyoxalic and pyruvic acid catalysed by iron in atmospheric waters
The 14 references without a DOI — listed, not checked
no DOI — not checked10.1016/S0926-3373(00)00289-7_BIB5
no DOI — not checkedR.T. Bickley, T. González-Caralro, L. Palmisano, in: Proceedings of the 4th International Symposium on Scientific Bases for the Preparation of Heterogeneus Catalysts, Belgium, 1986.
no DOI — not checkedV. Augugliaro, L. Palmisano, in: M.A. Schiavello (Ed.), Photocatalysis and Environmente, NATO ASI Series, Series C, Vol. 237, Kluwer Academic Publishers, Dordrecht, 1988, p. 425.
no DOI — not checkedJ.C. Conesa, J. Soria, V. Augugliaro, L. Palmisano, in: C. Morterm, A. Zekina, A. Costa (Eds.), Studies in Surface Science and Catalysis: Structure and Reactivity of Surfaces, Vol. 40.
no DOI — not checkedR.P.A. Sneeden, L’Actualité Chimique, 22 February 1979.
no DOI — not checked10.1016/S0926-3373(00)00289-7_BIB29
no DOI — not checkedM.E. Volpin, I.S. Kolomnikov, in: E. Becker, M. Tsutsui (Eds.), Organometallic Reactions, Vol. 5, Interscience, New York, 1975, p. 313.
no DOI — not checkedK. Nakamoto, Infrared Spectra of Inorganic and Coordintatio Compounds, Mir, Moscow, 1966 (in Russian).
no DOI — not checkedA.A. Davydov, A.A. Budneva, T.M. Yur’eva, An investigation of surface compounds in carbon monoxide conversion on solid solutions of CuO–MgO by the infrared spectroscopic method, in: Proceedings of the All-Union Conference on the Mechanism of Heterogeneous Catalytic Reactions, Institute of Chemical Physics, Vol. 39, Moscow, 1974 (preprint).
no DOI — not checked10.1016/S0926-3373(00)00289-7_BIB48
no DOI — not checkedM.J. Almond, A.J. Downs, J. Chem. Soc., Dalton Trans. (1994) 809.
no DOI — not checkedF.A. Cotton, G. Wilkinson, Quı́mica Inorgánica Avanzada, Limusa, 1986.
no DOI — not checked10.1016/S0926-3373(00)00289-7_BIB56
no DOI — not checked10.1016/S0926-3373(00)00289-7_BIB58
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