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Polymorph engineering of CuMO2 (M = Al, Ga, Sc, Y) semiconductors for solar energy applications: From delafossite to wurtzite
David O. Scanlon,
Aron Walsh
Department of Materials Science and Engineering
Research output
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Contribution to journal
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Article
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peer-review
9
Citations (Scopus)
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Dive into the research topics of 'Polymorph engineering of CuMO2 (M = Al, Ga, Sc, Y) semiconductors for solar energy applications: From delafossite to wurtzite'. Together they form a unique fingerprint.
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Chemistry
Band Gap
50%
Semiconductor
50%
Structure
50%
Application
50%
Electronic Property
25%
Transparency
25%
Dipole
25%
Solar Energy
25%
Homologous Sery
25%
Chalcopyrite
25%
Cuprous Oxide
25%
Metal
25%
Group
25%
Metal Oxide
25%
Earth and Planetary Sciences
Semiconductor
50%
Utilization
50%
Wurtzite
50%
Transparency
25%
Solar Energy
25%
Metal Oxide
25%
Chalcopyrite
25%
Proving
25%
Difference
25%
Context
25%
Metal
25%
Co-Ordination
25%
Earth
25%
Physics
Semiconductor
50%
Wurtzite
50%
Utilization
50%
First-Principles
25%
Solar Energy
25%
Differences
25%
Metal
25%
Earth
25%
Material Science
Material
100%
Semiconductor Material
50%
Transparent Conducting Oxide
25%
Polymorphism
25%