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Advancement in Gas Sensors : Self-Powered Innovations for Real-World Impact / edited by Neeraj Dhariwal, Vinod Kumar, O. P. Thakur, R. P. Pant.

Springer eBooks EBA - Engineering Collection 2026 Available online

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Format:
Book
Author/Creator:
Dhariwal, Neeraj.
Series:
Smart Sensors, Measurement and Instrumentation, 2194-8410 ; 53
Language:
English
Subjects (All):
Energy harvesting.
Materials.
Detectors.
Analytical chemistry.
Energy Harvesting.
Sensors and biosensors.
Analytical Chemistry.
Local Subjects:
Energy Harvesting.
Sensors and biosensors.
Analytical Chemistry.
Physical Description:
1 online resource (374 pages)
Edition:
1st ed. 2026.
Place of Publication:
Cham : Springer Nature Switzerland : Imprint: Springer, 2026.
Summary:
This book provides a combined effect and an in-depth exploration of how advanced materials and energy-harvesting technologies create smarter and more adaptive sensing device. Self-powered gas sensors have become a cornerstone of modern technological innovation, finding critical utilities in various sectors ranging from medical and environmental monitoring to industrial safety and smart agriculture. The future demands of gas sensors not only depend on its efficiency and sensitivity but also lie in the fabrication of devices that are flexible, environmental friendly, and self-powered. .
Contents:
Journey of Gas Sensors
Fundamentals of self powered gas sensor
Technologies of Self-Powering device
Advanced Materials for Self powered Gas Sensors
Interface Engineering in Sensor Devices
Development and Synthesis Methodology of Versatile Bulk and Nanostructured Material for Gas Sensors
Advanced Techniques for Film Fabrication
Mechanistic Insight and Sensitivity Enhancement for Gas Detection
Case Studies based on Real World Application of self powered gas sensor
Challenges, Commercialization, and Future Directions
Sustainability and Environmental Impact
Gas Sensors at the Frontier: Material, Design and System Integration in Emerging Tech Landscapes.
Notes:
Description based on publisher supplied metadata and other sources.
ISBN:
3-032-09625-1
9783032096258
OCLC:
1561181064

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