Register      Login
Australian Journal of Chemistry Australian Journal of Chemistry Society
An international journal for chemical science

Articles citing this paper

Solar reduction of water. I. Competition between light-induced hydrogen formation and hydrogenation of methylviologen in the system water-Tris(2,2'-bipyridine)ruthenium dication-ethylenediaminetetraacetic acid-platinum

O Johansen, A Launikonis, JW Loder, AWH Mau, WHF Sasse, JD Swift and D Wells
34(5) pp.981 - 991


57 articles found in Crossref database.

Homogeneous catalysis of platinum(II) complexes in photochemical hydrogen production from water
Sakai Ken, Ozawa Hironobu
Coordination Chemistry Reviews. 2007 251(21-24). p.2753
Singlet and triplet energy transfer processes in ruthenium(II) bipyridine complexes containing covalently bound arenes
Wilson G.J., Sasse W.H.F., Mau A.W.-H.
Chemical Physics Letters. 1996 250(5-6). p.583
Homogeneous and Heterogeneous Photocatalysis (1986)
Balzani Vincenzo, Juris Alberto, Scandola Franco
Photoinduced hydrogen evolution from water using bipyridinium salts as electron carriers
Okura Ichiro, Kaji Naruhiko, Aono Shigetoshi, Kita Tatsuya
Inorganica Chimica Acta. 1985 101(3). p.L25
Development of a Minimal Photosystem for Hydrogen Production in Inorganic Chemical Cells
Nakanishi Keita, Cooper Geoffrey J. T., Points Laurie J., Bloor Leanne G., Ohba Masaaki, Cronin Leroy
Angewandte Chemie. 2018 130(40). p.13250
Photochemical production of hydrogen from water
Amouyal Edmond, Koffi Philippe
Journal of Photochemistry. 1985 29(1-2). p.227
Photogeneration of hydrogen from water using CdSe nanocrystals demonstrating the importance of surface exchange
Das Amit, Han Zhiji, Haghighi Mohsen Golbon, Eisenberg Richard
Proceedings of the National Academy of Sciences. 2013 110(42). p.16716
Towards Hydrogen Evolution Initiated by LED Light: 2‐(1H‐1,2,3‐Triazol‐4‐yl)pyridine‐Containing Polymers as Photocatalyst
Happ Bobby, Kübel Joachim, Pfeffer Michael G., Winter Andreas, Hager Martin D., Dietzek Benjamin, Rau Sven, Schubert Ulrich S.
Macromolecular Rapid Communications. 2015 36(7). p.671
Immobilisierte tris(2,2′‐bipyridin)ruthenium(II)‐komplexe als photosensibilisatoren für die wasserphotolyse
Nußbaumer Walter, Gruber Heinrich, Greber Gerd
Die Makromolekulare Chemie. 1988 189(5). p.1027
Photophysics, photochemistry and solar energy conversion with tris(bipyridyl)ruthenium(II) and its analogues
Kalyanasundaram K.
Coordination Chemistry Reviews. 1982 46 p.159
Spectroscopic, Electrochemical, and Kinetic Characterization of New Ruthenium(II) Tris‐chelates Containing Five‐Membered Heterocyclic Moieties
Orellana Guillermo, Quiroga María L., Braun André M.
Helvetica Chimica Acta. 1987 70(8). p.2073
Voltammetric characteristics of the RuO2 film electrode in relation to the catalytic properties of RuO2 for the photochemical production of hydrogen
Kleijn Mieke, Van Leeuwen Herman P.
Journal of Electroanalytical Chemistry and Interfacial Electrochemistry. 1988 247(1-2). p.253
A kinetic model for the Ru(bipy)32+/MV2+/EDTA/colloidal RuO2 system for photogeneration of hydrogen
Kleijn J.M., Rouwendal E., Van Leeuwen H.P., Lyklema J.
Journal of Photochemistry and Photobiology A: Chemistry. 1988 44(1). p.29
Colloid-chemical properties of ruthenium dioxide in relation to catalysis of the photochemical generation of hydrogen
Kleijn J. M., Lyklema J.
Colloid & Polymer Science. 1987 265(12). p.1105
Effect of methylviologen on the hydrogen evolution at mercury electrodes in aqueous buffer solutions
Tamamushi Reita, Tanaka Kazuko
Journal of Electroanalytical Chemistry and Interfacial Electrochemistry. 1987 230(1-2). p.177
Development of a Minimal Photosystem for Hydrogen Production in Inorganic Chemical Cells
Nakanishi Keita, Cooper Geoffrey J. T., Points Laurie J., Bloor Leanne G., Ohba Masaaki, Cronin Leroy
Angewandte Chemie International Edition. 2018 57(40). p.13066
Radiolytically-induced one-electron reduction of methyl viologen in aqueous solution
Venturi Margherita, Mulazzani Quinto G., Hoffman Morton Z.
Radiation Physics and Chemistry (1977). 1984 23(1-2). p.229
Highly stable pseudo[2]rotaxanes co-driven by crown ether–ammonium and donor–acceptor interactions
Feng Dai-Jun, Li Xiao-Qiang, Wang Xiao-Zhong, Jiang Xi-Kui, Li Zhan-Ting
Tetrahedron. 2004 60(29). p.6137
Cobalt(III) sepulchrate: A new relay for water splitting photochemical cycles
Scandola Maria Anita Rampi, Scandola Franco, Indelli Antonio, Balzani Vincenzo
Inorganica Chimica Acta. 1983 76 p.L67
Wasserphotolyse mit Hilfe von funktionellen Tris-(2,2?-bipyridin)ruthenium(II)-Komplexen
Nu�baumer W., Gruber H., Greber G. F.
Monatshefte f�r Chemie Chemical Monthly. 1988 119(1). p.1
On the syntheses and photochemical properties of novel pyrrolizinone derivatives as photosensitizers
Bauer Rupert, Heisler Günter, Königstein Christian
Tetrahedron. 1993 49(30). p.6591
Homogeneous catalyses of mixed-valent octanuclear platinum complexes in photochemical hydrogen production from water
Sakai Ken, Kizaki Yukio, Tsubomura Taro, Matsumoto Kazuko
Journal of Molecular Catalysis. 1993 79(1-3). p.141
Intramolecular sensitized electron relays 1,1″,1′″-trialkyl[4,2′;4′,4″;6′,4′″]quaterpyridinium trichlorides
Bauer Rupert, Königstein Christian
Journal of Photochemistry and Photobiology A: Chemistry. 1991 59(1). p.61
Photochemical production of hydrogen and oxygen from water: A review and state of the art
Amouyal Edmond
Solar Energy Materials and Solar Cells. 1995 38(1-4). p.249
Homogeneous Catalysis of the Photoreduction of Water by Visible Light. 3. Mediation by Polypyridine Complexes of Ruthenium(II) and Cobalt(II)
Krishnan C. V., Creutz Carol, Mahajan Devinder, Schwarz Harold A., Sutin Norman
Israel Journal of Chemistry. 1982 22(2). p.98
1,1″,1‴-Trialkyl[4,2′;4′,4″;6′,4‴] quaterpyridinium trichlorides as electron transfer agents
Bauer Rupert, Hofstadler Klaus, Königstein Christian
Proceedings / Indian Academy of Sciences. 1992 104(2).
Photo induced hydrogen evolution from water in the presence of EDTA and a PtTiO2 supported catalyst
Loy L., Wolf E.E.
Solar Energy. 1985 34(6). p.455
Solar energy conversion from water photolysis by biological and chemical systems
De La Rosa Miguel A., Navarro José A., Roncel Mercedes
Applied Biochemistry and Biotechnology. 1991 30(1). p.61
Transport and kinetics at microheterogeneous electrodes
Albery W.John, Bartlett Philip N., McMahon Andrew J.
Journal of Electroanalytical Chemistry and Interfacial Electrochemistry. 1985 182(1). p.7
Hydrogen Systems (1986)
Getoff N.
Highly efficient photoreduction of water using energy transfer
Johansen Oddvar, Mau Albert W.-H., Sasse Wolfgang H.F.
Chemical Physics Letters. 1983 94(1). p.113
Photochemical Conversion and Storage of Solar Energy (1991)
Bahnemann D. W.
Zeolite-supported ruthenium oxide catalysts for photochemical reduction of water to hydrogen
Dutta Prabir K, Vaidyalingam Anand S
Microporous and Mesoporous Materials. 2003 62(1-2). p.107
Studies of the antenna effect in polymer molecules. 27. Hydrogen evolution from water
Nowakowska Maria, Guillet James E.
Journal of Photochemistry and Photobiology A: Chemistry. 1998 112(2-3). p.285
Electrochemical investigations of a covalently bonded viologen cyanine dye-system
Königstein Christian, Neumann-Spallart Michael, Bauer Rupert
Electrochimica Acta. 1998 43(16-17). p.2435
Photo-Induced Generation of Dihydrogen and Reduction of Carbon Dioxide Using Transition Metal Complexes
Sutin Norman, Creutz Carol, Fujita Etsuko
Comments on Inorganic Chemistry. 1997 19(2). p.67
On the Effect of Electron Relay Redox Potential on Electron Transfer Reactions in a Water Photoreduction Model System
Amouyal Edmond, Zidler Bertrand
Israel Journal of Chemistry. 1982 22(2). p.117
The 9-anthracenecarboxylate anion as sensitizer for the photoreduction of water
Johansen Oddvar, Mau Albert W.-H., Sasse Wolfgang H.F.
Chemical Physics Letters. 1983 94(1). p.107
Surfactants in Solution (1989)
Nagy J. B., Derouane E. G., Gourgue A., Lufimpadio N., Ravet I., Verfaillie J. P.
Modification of glassy carbon electrodes by a new type of polymeric viologen
Janda Pavel, Weber Jan, Kavan Ladislav
Journal of Electroanalytical Chemistry and Interfacial Electrochemistry. 1984 180(1-2). p.109
ChemInform Abstract: SOLAR REDUCTION OF WATER. I. COMPETITION BETWEEN LIGHT‐INDUCED HYDROGEN FORMATION AND HYDROGENATION OF METHYLVIOLOGEN IN THE SYSTEM WATER/TRIS(2,2′‐BIPYRIDINE)RUTHENIUM DICATION/ETHYLENEDIAMINETETRAACETIC ACID/PLATINUM
JOHANSEN O., LAUNIKONIS A., LODER J. W., MAU A. W.‐H., SASSE W. H. F., SWIFT J. D., WELLS D.
Chemischer Informationsdienst. 1981 12(45).
A new mechanism for electron transfer between methyl viologen radicals and water
Bauer Rupert, Werner H»kan A.F.
Journal of Molecular Catalysis. 1992 72(1). p.67
XANTHENE DYES AS SENSITIZERS FOR THE PHOTOREDUCTION OF WATER
Mau A. W.‐H., Johansen O., Sasse W. H. F.
Photochemistry and Photobiology. 1985 41(5). p.503
The influence of the preparation temperature of colloidal ruthenium dioxide on the photosensitized reduction of H+ ions
Kleijn J.Mieke, Boschloo Gerrit K.
Journal of Electroanalytical Chemistry and Interfacial Electrochemistry. 1991 300(1-2). p.595
Pulse radiolysis of sulfonato-propyl-viologen (SPV) in aqueous solution containing colloidal platinum
Nahor Gad S., Rabani Joseph
International Journal of Radiation Applications and Instrumentation. Part C. Radiation Physics and Chemistry. 1987 29(1). p.79
Chemistry of the Platinum Group Metals - Recent Developments (1991)
Mills A.
Advances in Heterocyclic Chemistry Volume 35 (1984)
Summers Lindsay A.
Photo-induced hydrogen evolution using Bipyridinium salts and electron carriers
Okura Ichiro, Kaji Naruhiko, Aono Shigetoshi, Kita Tatsuya
Inorganica Chimica Acta. 1984 86(3). p.L79
Molecular Anion Binding and Substrate Photooxidation in Visible Light by 2,7‐Diazapyrenium Cations
Blacker A. John, Jazwinski Jaroslaw, Lehn Jean‐Marie
Helvetica Chimica Acta. 1987 70(1). p.1
Hydrogen production by water photolysis using nitrilotriacetic acid as electron donor
Werner Håkan A.F., Bauer Rupert
Journal of Photochemistry and Photobiology A: Chemistry. 1996 97(3). p.171
Some aspects of photochemical systems for direct light-induced hydrogen production
Königstein Christian
Journal of Photochemistry and Photobiology A: Chemistry. 1995 90(2-3). p.141
Dye–micelle aggregate formation for effective photobleaching
Kundu Subrata, Panigrahi Sudipa, Pal Anjali, Ghosh Sujit Kumar, Nath Sudip, Praharaj Snigdhamayee, Basu Soumen, Pal Tarasankar
Dyes and Pigments. 2006 69(3). p.177
Photocatalytic Hydrogen Production from Water Using Heterogeneous Two-dimensional Rhodium Coordination Polymer [Rh2(p-BDC)2]n
Kataoka Yusuke, Sato Konomi, Miyazaki Yuhei, Suzuki Yuto, Tanaka Hiroshi, Kitagawa Yasutaka, Kawakami Takashi, Okumura Mitsutaka, Mori Wasuke
Chemistry Letters. 2010 39(4). p.358
Photocatalytic H2 Evolution Using a Ru Chromophore Tethered to Six Viologen Acceptors
Yamamoto Keiya, Call Arnau, Sakai Ken
Chemistry – A European Journal. 2018 24(62). p.16620
Photoinduced Hydrogen Evolution with Hydrogenase Using Bipyridinium Salts as Electron Carriers
Okura Ichiro, Fujie Hiroki, Aono Shigetoshi, Kita Tatsuya, Kaji Naruhiko
Bulletin of the Chemical Society of Japan. 1986 59(1). p.309
Photochemical hydrogen evolution from alkaline solutions of xanthene dyes
Bi Zhi-Chu, Xie Qing-Shan, Yu Jia-Yong
Journal of Photochemistry and Photobiology A: Chemistry. 1995 85(3). p.269
Improved Hydrogen Production with Tetramethyl‐and Hexamethylviologen as Electron‐Transfer Agents in the System H2O‐Ru(bpy)2+3‐edta‐Pt
Launikonis Anton, Loder John W., Mau Albert W.‐H., Sasse Wolfgang H. F., Wells Darrell
Israel Journal of Chemistry. 1982 22(2). p.158

Committee on Publication Ethics


Abstract Export Citation Get Permission