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Recent advances in multifunctional materials for gas sensing applications
Runia Jana
, Sugato Hajra
, P. Mary Rajaitha
, Krystian Mistewicz
,
Hoe Joon Kim
Department of Robotics and Mechatronics Engineering
Daegu Gyeongbuk Institute of Science and Technology
Silesian University of Technology
Research output
:
Contribution to journal
›
Article
›
peer-review
41
Scopus citations
Overview
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Earth and Planetary Sciences
Utilization
100%
Detection
100%
Gas
100%
Methane
27%
Monitor
18%
Attention
18%
Risk
18%
Metal
18%
Health
18%
Time
9%
Response
9%
Nanomaterial
9%
Sensitivity
9%
Morphology
9%
Carbon
9%
Perovskites
9%
Increasing
9%
Leakage
9%
Internet
9%
Transition Metal
9%
Achievement
9%
Air Pollution
9%
Accident
9%
Animal Life
9%
Metal Oxide
9%
Contaminant
9%
Selectivity
9%
Physics
Utilization
100%
Detection
100%
Gases
100%
Metal
27%
Planetary Atmosphere
18%
Carbon Dioxide
18%
Performance
9%
Perovskites
9%
Responses
9%
Oxide
9%
Air
9%
Selectivity
9%
Increasing
9%
Vapor
9%
Carbon Materials
9%
IoT
9%
Material Science
Gas
100%
Material
100%
Gas Sensor
81%
Metal
18%
Metal Oxide
18%
Nanocrystalline Material
9%
Nanostructured Material
9%
Ferrite
9%
Air
9%
Morphology
9%
Vapor
9%
Transition Metal Dichalcogenides
9%
Detector
9%
Organic Polymer
9%
Chemistry
Application
100%
Gas
100%
Perovskites
18%
Time
9%
Metal
9%
Synthesis (Chemical)
9%
Reaction Selectivity
9%
Accident
9%
Number
9%
Nanomaterial
9%
Group
9%
Polymer
9%
Carbon Material
9%
Transition Element
9%
Ammonia
9%
Sulphur Dioxide
9%
Environmental Pollutant
9%
Engineering
Sensing Application
100%
Application of Sensors
27%
Sensing Mechanisms
27%
Fields
18%
Detection
18%
Sensing Property
18%
Metal Sulfides
18%
Performance
9%
Accidents
9%
Polymer
9%
Nanomaterial
9%
Special Attention
9%
Response Time
9%
Internet of Things
9%
Human Life
9%
Measurement Sensitivity
9%
Recovery Time
9%