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Carrier lifetime and charge separation in K
+
-doped CZTS nanocrystals
Animesh Mondal
, Christopher Scheinert
, James G. Radich
Penn State Greater Allegheny
Research output
:
Contribution to journal
›
Article
›
peer-review
16
Link opens in a new tab
Scopus citations
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+
-doped CZTS nanocrystals'. Together they form a unique fingerprint.
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Keyphrases
Charge Separation
100%
Carrier Lifetime
100%
Solar Energy Conversion
28%
Conversion Strategy
28%
Solar Energy Capture
28%
Capture Strategy
28%
High Efficiency
14%
Na +
14%
X-ray Photoelectron Spectroscopy
14%
Raman Spectroscopy
14%
Undoped
14%
Dopant
14%
Photocurrent
14%
High Absorption Coefficient
14%
Li +
14%
Morphological Defects
14%
Surface Electrons
14%
Band Gap Energy
14%
Electron Traps
14%
Photoresponsivity
14%
Synthesis Routes
14%
Photoelectrochemical Cell
14%
Photocathode
14%
Promising Direction
14%
Crystal Defects
14%
Phase Purity
14%
High-temperature Annealing
14%
Transient Absorption Spectroscopy
14%
Earth-abundant Materials
14%
K Doping
14%
Cu2ZnSnS4
14%
Low Polydispersity
14%
Charge Carrier Lifetime
14%
Anion Vacancies
14%
Photocurrent Density
14%
Alkali-earth Metal Ions
14%
Material Science
Charge Carrier
100%
Carrier Lifetime
100%
Surface (Surface Science)
50%
Density
25%
Annealing
25%
X-Ray Photoelectron Spectroscopy
25%
Morphology
25%
Doping (Additives)
25%
Raman Spectroscopy
25%
Absorption Spectroscopy
25%
Photoelectrochemical Cell
25%