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Stoichiometry and electrical charge transport in HgI
2
crystals
H. Hermon
*
,
M. Roth
, J. Nissenbaum
, M. Schieber
, J. Shamir
*
Corresponding author for this work
The Institute of Applied Physics
Research output
:
Contribution to journal
›
Article
›
peer-review
14
Scopus citations
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2
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Keyphrases
Stoichiometry
100%
Charge Transport
100%
Electrical Charge
100%
HgI2
100%
CRISTAL
100%
Mercury
60%
Sublimation
40%
Order of Magnitude
20%
Raman Spectroscopy
20%
Raman Spectra
20%
Charge Carriers
20%
Iodide
20%
Iodine
20%
Crystal Growth
20%
Carbon Tetrachloride
20%
Synthesis Methods
20%
Spectrophotometry
20%
Energy Resolution
20%
Absorption Intensity
20%
Nearly Stoichiometric
20%
Liquid Solution
20%
Nuclear Detector
20%
Mercuric Iodide
20%
CC14
20%
Iodine Excess
20%
Growth Atmosphere
20%
Stoichiometric Analysis
20%
Dynamic Dissolution
20%
Nonstoichiometric Defects
20%
Iodine-rich
20%
Transient Charge
20%
Radiation Induced Charge
20%
Chemistry
Reaction Stoichiometry
100%
Charge Transfer
100%
Iodine
100%
Chemical Kinetics Characteristics
33%
Melting Point
33%
Spectrophotometry
33%
Nuclear Radiation
33%
Raman Spectra
33%
Charge Carrier
33%
Raman Spectroscopy
33%
Raman Spectrometry
33%
Tetrachloromethane
33%