The Experts below are selected from a list of 63 Experts worldwide ranked by ideXlab platform
B S Tsukerblat - One of the best experts on this subject based on the ideXlab platform.
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expanding the Hierarchy of metal oxide building Blocks from fragments via clusters to networks a 2 mo17 no 2 3 mov2 3 feiii 6 feii1 5 type layer compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo17(NO)2}3{MoV 2}3{Fe 6 III } cluster entities that are interlinked to layers via {FeII(H2O)4}2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}3+, MoV, MoVI, FeII, and FeIII. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of Metal-Oxide Building Blocks from Fragments via Clusters to Networks: A∞2[({Mo17(NO)2}3{MoV2}3{FeIII}6)(FeII1.5)]-Type Layer Compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo17(NO)2}3{MoV 2}3{Fe 6 III } cluster entities that are interlinked to layers via {FeII(H2O)4}2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}3+, MoV, MoVI, FeII, and FeIII. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of Metal-Oxide Building Blocks from Fragments via Clusters to Networks: A _∞ ^2 [({Mo_17(NO)_2}_3{Mo^V _2}_3{Fe^III}_6)(Fe^II _1.5)]-Type
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo_17(NO)_2}_3{Mo^V _2}_3{Fe _6 ^III } cluster entities that are interlinked to layers via {Fe^II(H_2O)_4}^2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}^3+, Mo^V, Mo^VI, Fe^II, and Fe^III. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of metal-oxide building Blocks from fragments via clusters to networks: A(infinity)(2)[({Mo-17(NO)(2)}(3){Mo-2(V)}(3){Fe-III}(6))(Fe-1.5(II))]-t ype layer compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo-17(NO)(2)}(3){Mo-2(V)}(3){Fe-6(III)} cluster entities that are interlinked to layers via {Fe-II(H2O)(4)}(2+) groups is formed stepwise from building Units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}(3+) Mo-V, Mo-VI, Fe-II, and Fe-III. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
Achim Muller - One of the best experts on this subject based on the ideXlab platform.
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expanding the Hierarchy of metal oxide building Blocks from fragments via clusters to networks a 2 mo17 no 2 3 mov2 3 feiii 6 feii1 5 type layer compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo17(NO)2}3{MoV 2}3{Fe 6 III } cluster entities that are interlinked to layers via {FeII(H2O)4}2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}3+, MoV, MoVI, FeII, and FeIII. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of Metal-Oxide Building Blocks from Fragments via Clusters to Networks: A∞2[({Mo17(NO)2}3{MoV2}3{FeIII}6)(FeII1.5)]-Type Layer Compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo17(NO)2}3{MoV 2}3{Fe 6 III } cluster entities that are interlinked to layers via {FeII(H2O)4}2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}3+, MoV, MoVI, FeII, and FeIII. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of Metal-Oxide Building Blocks from Fragments via Clusters to Networks: A _∞ ^2 [({Mo_17(NO)_2}_3{Mo^V _2}_3{Fe^III}_6)(Fe^II _1.5)]-Type
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo_17(NO)_2}_3{Mo^V _2}_3{Fe _6 ^III } cluster entities that are interlinked to layers via {Fe^II(H_2O)_4}^2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}^3+, Mo^V, Mo^VI, Fe^II, and Fe^III. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of metal-oxide building Blocks from fragments via clusters to networks: A(infinity)(2)[({Mo-17(NO)(2)}(3){Mo-2(V)}(3){Fe-III}(6))(Fe-1.5(II))]-t ype layer compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo-17(NO)(2)}(3){Mo-2(V)}(3){Fe-6(III)} cluster entities that are interlinked to layers via {Fe-II(H2O)(4)}(2+) groups is formed stepwise from building Units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}(3+) Mo-V, Mo-VI, Fe-II, and Fe-III. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
Sergei Talismanov - One of the best experts on this subject based on the ideXlab platform.
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expanding the Hierarchy of metal oxide building Blocks from fragments via clusters to networks a 2 mo17 no 2 3 mov2 3 feiii 6 feii1 5 type layer compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo17(NO)2}3{MoV 2}3{Fe 6 III } cluster entities that are interlinked to layers via {FeII(H2O)4}2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}3+, MoV, MoVI, FeII, and FeIII. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of Metal-Oxide Building Blocks from Fragments via Clusters to Networks: A∞2[({Mo17(NO)2}3{MoV2}3{FeIII}6)(FeII1.5)]-Type Layer Compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo17(NO)2}3{MoV 2}3{Fe 6 III } cluster entities that are interlinked to layers via {FeII(H2O)4}2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}3+, MoV, MoVI, FeII, and FeIII. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of Metal-Oxide Building Blocks from Fragments via Clusters to Networks: A _∞ ^2 [({Mo_17(NO)_2}_3{Mo^V _2}_3{Fe^III}_6)(Fe^II _1.5)]-Type
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo_17(NO)_2}_3{Mo^V _2}_3{Fe _6 ^III } cluster entities that are interlinked to layers via {Fe^II(H_2O)_4}^2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}^3+, Mo^V, Mo^VI, Fe^II, and Fe^III. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of metal-oxide building Blocks from fragments via clusters to networks: A(infinity)(2)[({Mo-17(NO)(2)}(3){Mo-2(V)}(3){Fe-III}(6))(Fe-1.5(II))]-t ype layer compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo-17(NO)(2)}(3){Mo-2(V)}(3){Fe-6(III)} cluster entities that are interlinked to layers via {Fe-II(H2O)(4)}(2+) groups is formed stepwise from building Units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}(3+) Mo-V, Mo-VI, Fe-II, and Fe-III. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
Paul Kogerler - One of the best experts on this subject based on the ideXlab platform.
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expanding the Hierarchy of metal oxide building Blocks from fragments via clusters to networks a 2 mo17 no 2 3 mov2 3 feiii 6 feii1 5 type layer compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo17(NO)2}3{MoV 2}3{Fe 6 III } cluster entities that are interlinked to layers via {FeII(H2O)4}2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}3+, MoV, MoVI, FeII, and FeIII. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of Metal-Oxide Building Blocks from Fragments via Clusters to Networks: A∞2[({Mo17(NO)2}3{MoV2}3{FeIII}6)(FeII1.5)]-Type Layer Compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo17(NO)2}3{MoV 2}3{Fe 6 III } cluster entities that are interlinked to layers via {FeII(H2O)4}2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}3+, MoV, MoVI, FeII, and FeIII. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of Metal-Oxide Building Blocks from Fragments via Clusters to Networks: A _∞ ^2 [({Mo_17(NO)_2}_3{Mo^V _2}_3{Fe^III}_6)(Fe^II _1.5)]-Type
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo_17(NO)_2}_3{Mo^V _2}_3{Fe _6 ^III } cluster entities that are interlinked to layers via {Fe^II(H_2O)_4}^2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}^3+, Mo^V, Mo^VI, Fe^II, and Fe^III. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of metal-oxide building Blocks from fragments via clusters to networks: A(infinity)(2)[({Mo-17(NO)(2)}(3){Mo-2(V)}(3){Fe-III}(6))(Fe-1.5(II))]-t ype layer compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo-17(NO)(2)}(3){Mo-2(V)}(3){Fe-6(III)} cluster entities that are interlinked to layers via {Fe-II(H2O)(4)}(2+) groups is formed stepwise from building Units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}(3+) Mo-V, Mo-VI, Fe-II, and Fe-III. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
Hartmut Bogge - One of the best experts on this subject based on the ideXlab platform.
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expanding the Hierarchy of metal oxide building Blocks from fragments via clusters to networks a 2 mo17 no 2 3 mov2 3 feiii 6 feii1 5 type layer compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo17(NO)2}3{MoV 2}3{Fe 6 III } cluster entities that are interlinked to layers via {FeII(H2O)4}2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}3+, MoV, MoVI, FeII, and FeIII. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of Metal-Oxide Building Blocks from Fragments via Clusters to Networks: A∞2[({Mo17(NO)2}3{MoV2}3{FeIII}6)(FeII1.5)]-Type Layer Compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo17(NO)2}3{MoV 2}3{Fe 6 III } cluster entities that are interlinked to layers via {FeII(H2O)4}2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}3+, MoV, MoVI, FeII, and FeIII. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of Metal-Oxide Building Blocks from Fragments via Clusters to Networks: A _∞ ^2 [({Mo_17(NO)_2}_3{Mo^V _2}_3{Fe^III}_6)(Fe^II _1.5)]-Type
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo_17(NO)_2}_3{Mo^V _2}_3{Fe _6 ^III } cluster entities that are interlinked to layers via {Fe^II(H_2O)_4}^2+ groups is formed stepwise from building units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}^3+, Mo^V, Mo^VI, Fe^II, and Fe^III. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.
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Expanding the Hierarchy of metal-oxide building Blocks from fragments via clusters to networks: A(infinity)(2)[({Mo-17(NO)(2)}(3){Mo-2(V)}(3){Fe-III}(6))(Fe-1.5(II))]-t ype layer compound
Journal of Cluster Science, 2005Co-Authors: Achim Muller, Sergei Talismanov, Paul Kogerler, Hartmut Bogge, Marc Schmidtmann, B S TsukerblatAbstract:A planar network consisting of {Mo-17(NO)(2)}(3){Mo-2(V)}(3){Fe-6(III)} cluster entities that are interlinked to layers via {Fe-II(H2O)(4)}(2+) groups is formed stepwise from building Units. The corresponding mixed-valence compound exhibits a variety of different formal oxidation states: {MoNO}(3+) Mo-V, Mo-VI, Fe-II, and Fe-III. This compound also represents an extension of building-Block Hierarchy from the molecular level to extended networks.