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Vanadium Oxides for Energy and Security Applications
Chiranjivi Lamsal
,
N. M. Ravindra
Physics
Research output
:
Chapter in Book/Report/Conference proceeding
›
Chapter
4
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Scopus citations
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Keyphrases
Security Applications
100%
Energy Applications
100%
Vanadium Oxide
100%
Sensing Element
33%
Spectral Range
33%
Performance Parameters
33%
Insulator-metal Phase Transition
33%
Energy Consumption
16%
Smart Materials
16%
Increased Demand
16%
Modern Technologies
16%
Active Area
16%
High Temperature
16%
Energy Cost
16%
Room Temperature
16%
Potential Threats
16%
Metamaterials
16%
Energy Exploration
16%
CO2 Emissions
16%
Energy Shortage
16%
Optimum Performance
16%
Bolometer
16%
Infrared Absorption
16%
Environmental Defense
16%
Passivation Characteristics
16%
Environmental Security
16%
New Energy Sources
16%
Climate Change Risk
16%
Working Principle
16%
Dynamic Tuning
16%
Thermal Detector
16%
Energy Environmental Protection
16%
Bolometer Detectors
16%
Cooling Mechanism
16%
Security of Supply
16%
Climate Potential
16%
Working Mechanism
16%
Mechanistic Method
16%
VO2 Film
16%
Temperature Coefficient of Resistance
16%
Fluctuating Energy
16%
Absorption Characteristics
16%
Engineering
Energy Engineering
100%
Sensing Element
25%
Spectral Range
25%
Performance Parameter
25%
Metal Phase
25%
Increasing Demand
12%
Active Area
12%
Room Temperature
12%
Climate Change
12%
Environmental Protection
12%
Passivation
12%
Infrared Absorption
12%
Temperature Coefficient
12%
Optimum Performance
12%
Material Science
Oxide Compound
100%
Vanadium
100%
Intelligent Material
16%
Film
16%
Carbon Dioxide
16%
Metamaterial
16%