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Dramatic impurity effects on the charge-density wave in potassium molybdenum bronze
L. F. Schneemeyer
, F. J. DiSalvo
, S. E. Spengler
, J. V. Waszczak
Chemistry and Biochemistry
Research output
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Contribution to journal
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Article
›
peer-review
52
Scopus citations
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Keyphrases
Alkali
33%
Alkali Substitution
33%
Alloying System
66%
Charge Density Wave
100%
Charge Transport
33%
Coherence Length
33%
Doping Effect
33%
Impurity Effect
100%
Isoelectronic
33%
Low Temperature
33%
Molybdenum
33%
Molybdenum Bronzes
100%
NbSe3
33%
Nonlinear Current-voltage Characteristic
33%
Phase Transition
33%
Potassium
100%
Sublattice
33%
Substitutional Doping
33%
Tungsten
100%
Wave-driven
33%
Material Science
Current Voltage Characteristics
33%
Density
100%
Molybdenum
100%
Potassium
100%
Tungsten
100%
Chemistry
Charge Density Wave
100%
Charge Transfer
33%
Doping
66%
K
100%
Molybdenum
100%
Physics
Charge Transfer
100%