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Influence of iron doping on tetravalent nickel content in catalytic oxygen evolving films
by
Kempa, Thomas J.
, Li, Nancy
, von Cube, Felix
, Hadt, Ryan G.
, Bell, David C.
, Nocera, Daniel G.
, Chen, Lin X.
, Hayes, Dugan
, Bediako, D. Kwabena
in
catalysis
/ Chemistry
/ Correlation analysis
/ electrocatalysis
/ INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
/ Iron
/ MATERIALS SCIENCE
/ Nickel
/ Oxygen
/ oxygen evolution reaction
/ Physical Sciences
/ renewable energy
/ water splitting
2017
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Influence of iron doping on tetravalent nickel content in catalytic oxygen evolving films
by
Kempa, Thomas J.
, Li, Nancy
, von Cube, Felix
, Hadt, Ryan G.
, Bell, David C.
, Nocera, Daniel G.
, Chen, Lin X.
, Hayes, Dugan
, Bediako, D. Kwabena
in
catalysis
/ Chemistry
/ Correlation analysis
/ electrocatalysis
/ INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
/ Iron
/ MATERIALS SCIENCE
/ Nickel
/ Oxygen
/ oxygen evolution reaction
/ Physical Sciences
/ renewable energy
/ water splitting
2017
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Influence of iron doping on tetravalent nickel content in catalytic oxygen evolving films
by
Kempa, Thomas J.
, Li, Nancy
, von Cube, Felix
, Hadt, Ryan G.
, Bell, David C.
, Nocera, Daniel G.
, Chen, Lin X.
, Hayes, Dugan
, Bediako, D. Kwabena
in
catalysis
/ Chemistry
/ Correlation analysis
/ electrocatalysis
/ INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
/ Iron
/ MATERIALS SCIENCE
/ Nickel
/ Oxygen
/ oxygen evolution reaction
/ Physical Sciences
/ renewable energy
/ water splitting
2017
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Influence of iron doping on tetravalent nickel content in catalytic oxygen evolving films
Journal Article
Influence of iron doping on tetravalent nickel content in catalytic oxygen evolving films
2017
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Overview
Iron doping of nickel oxide films results in enhanced activity for promoting the oxygen evolution reaction (OER). Whereas this enhanced activity has been ascribed to a unique iron site within the nickel oxide matrix, we show here that Fe doping influences the Ni valency. The percent of Fe3+ doping promotes the formation of formal Ni4+, which in turn directly correlates with an enhanced activity of the catalyst in promoting OER. The role of Fe3+ is consistent with its behavior as a superior Lewis acid.
Publisher
National Academy of Sciences
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