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Journal of the American Chemical Society
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August 24, 2006
The true nature of the Di-iron(III) gamma-Keggin structure in water: catalytic aerobic oxidation and chemistry of an unsymmetrical trimer
Bogdan Botar, Yurii V Geletii, Paul Kögerler, et al.
Dalton Transactions (Cambridge, England : 2003)
|
May 24, 2005
Asymmetric terminal ligation on substituted sites in a disorder-free Keggin anion, [beta-SiFe2W10O36(OH)2(H2O)Cl]5-
Bogdan Botar, Yurii V Geletii, Paul Kögerler, et al.
Inorganic Chemistry
|
November 22, 2005
Electron exchange between alpha-Keggin tungstoaluminates and a well-defined cluster-anion probe for studies in electron transfer
Yurii V Geletii, Craig L Hill, Alan J Bailey, et al.
The Journal of Physical Chemistry. A
|
December 5, 2009
Computational studies of the geometry and electronic structure of an all-inorganic and homogeneous tetra-Ru-polyoxotungstate catalyst for water oxidation and its four subsequent one-electron oxidized forms
David Quiñonero, Alexey L Kaledin, Aleksey E Kuznetsov, et al.
Chemical Science
|
June 5, 2018
Water splitting with polyoxometalate-treated photoanodes: enhancing performance through sensitizer design
John Fielden, Jordan M Sumliner, Nannan Han, et al.
The Journal of Physical Chemistry. B
|
February 14, 2006
The role of the central atom in structure and reactivity of polyoxometalates with adjacent d-electron metal sites. computational and experimental studies of gamma-[(Xn+O4)RuIII2(OH)2(MFM)10O32](8-n)-) for MFM = Mo and W, and X = AlIII, SiIV, PV, and SVI
David Quiñonero, Yan Wang, Keiji Morokuma, et al.
Journal of the American Chemical Society
|
February 6, 2016
Electrooxidation of Ethanol and Methanol Using the Molecular Catalyst [{Ru4O4(OH)2(H2O)4}(γ-SiW10O36)2](10.)
YuPing Liu, Shu-Feng Zhao, Si-Xuan Guo, et al.
Journal of the American Chemical Society
|
August 28, 2013
Differentiating homogeneous and heterogeneous water oxidation catalysis: confirmation that [Co4(H2O)2(α-PW9O34)2]10- is a molecular water oxidation catalyst
James W Vickers, Hongjin Lv, Jordan M Sumliner, et al.
Journal of the American Chemical Society
|
May 15, 2024
Charge Transfer Mechanism on a Cobalt-Polyoxometalate-TiO<sub>2</sub> Photoanode for Water Oxidation in Acid
Fengyi Zhao, Ting Cheng, Xinlin Lu, et al.
Inorganic Chemistry
|
November 19, 2013
An inorganic chromophore based on a molecular oxide supported metal carbonyl cluster: [P2W17O61{Re(CO)3}3{ORb(H2O)}(μ3-OH)]9-
Chongchao Zhao, William Rodríguez-Córdoba, Alexey L Kaledin, et al.
Page
of 5
Search research articles
Search
Showing results (21-30 of 49) with videos related to
Sort By:
Page
of 5
Journal of the American Chemical Society
|
August 24, 2006
The true nature of the Di-iron(III) gamma-Keggin structure in water: catalytic aerobic oxidation and chemistry of an unsymmetrical trimer
Bogdan Botar, Yurii V Geletii, Paul Kögerler, et al.
Dalton Transactions (Cambridge, England : 2003)
|
May 24, 2005
Asymmetric terminal ligation on substituted sites in a disorder-free Keggin anion, [beta-SiFe2W10O36(OH)2(H2O)Cl]5-
Bogdan Botar, Yurii V Geletii, Paul Kögerler, et al.
Inorganic Chemistry
|
November 22, 2005
Electron exchange between alpha-Keggin tungstoaluminates and a well-defined cluster-anion probe for studies in electron transfer
Yurii V Geletii, Craig L Hill, Alan J Bailey, et al.
The Journal of Physical Chemistry. A
|
December 5, 2009
Computational studies of the geometry and electronic structure of an all-inorganic and homogeneous tetra-Ru-polyoxotungstate catalyst for water oxidation and its four subsequent one-electron oxidized forms
David Quiñonero, Alexey L Kaledin, Aleksey E Kuznetsov, et al.
Chemical Science
|
June 5, 2018
Water splitting with polyoxometalate-treated photoanodes: enhancing performance through sensitizer design
John Fielden, Jordan M Sumliner, Nannan Han, et al.
The Journal of Physical Chemistry. B
|
February 14, 2006
The role of the central atom in structure and reactivity of polyoxometalates with adjacent d-electron metal sites. computational and experimental studies of gamma-[(Xn+O4)RuIII2(OH)2(MFM)10O32](8-n)-) for MFM = Mo and W, and X = AlIII, SiIV, PV, and SVI
David Quiñonero, Yan Wang, Keiji Morokuma, et al.
Journal of the American Chemical Society
|
February 6, 2016
Electrooxidation of Ethanol and Methanol Using the Molecular Catalyst [{Ru4O4(OH)2(H2O)4}(γ-SiW10O36)2](10.)
YuPing Liu, Shu-Feng Zhao, Si-Xuan Guo, et al.
Journal of the American Chemical Society
|
August 28, 2013
Differentiating homogeneous and heterogeneous water oxidation catalysis: confirmation that [Co4(H2O)2(α-PW9O34)2]10- is a molecular water oxidation catalyst
James W Vickers, Hongjin Lv, Jordan M Sumliner, et al.
Journal of the American Chemical Society
|
May 15, 2024
Charge Transfer Mechanism on a Cobalt-Polyoxometalate-TiO<sub>2</sub> Photoanode for Water Oxidation in Acid
Fengyi Zhao, Ting Cheng, Xinlin Lu, et al.
Inorganic Chemistry
|
November 19, 2013
An inorganic chromophore based on a molecular oxide supported metal carbonyl cluster: [P2W17O61{Re(CO)3}3{ORb(H2O)}(μ3-OH)]9-
Chongchao Zhao, William Rodríguez-Córdoba, Alexey L Kaledin, et al.
Page
of 5