Nanomaterials-Based Sensing Platforms: Towards the Efficient Detection of Biomolecules and Gases
Editat de Aneeya K. Samantara, Sudarsan Raj, Satyajit Rathaen Limba Engleză Paperback – 26 aug 2024
The authors showcase the extraordinary success of nanomaterials, their current strategical exploitation, and an unprecedented pool of possibilities they hold for the future. Many of the technologies have been developed recently for the sensing of various bioanalytes and molecules, some of which have been included in this book through dedicated chapters. The book looks at various sensors, such as for biosensing, electrochemical sensing, gas sensing, photoelectrochemical sensing, and colorimetric sensing, all of which have shown vast potential.
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Specificații
ISBN-13: 9781774638590
ISBN-10: 1774638592
Pagini: 308
Ilustrații: 176
Dimensiuni: 152 x 229 mm
Greutate: 0.57 kg
Ediția:1
Editura: Apple Academic Press Inc.
Colecția Apple Academic Press
ISBN-10: 1774638592
Pagini: 308
Ilustrații: 176
Dimensiuni: 152 x 229 mm
Greutate: 0.57 kg
Ediția:1
Editura: Apple Academic Press Inc.
Colecția Apple Academic Press
Public țintă
Academic and PostgraduateNotă biografică
Aneeya K. Samantara, PhD, is a national postdoctorate fellow at the National Institute of Science Education and Research, Odisha, India. Dr. Samantara’s research interests include the synthesis of metal chalcogenides and graphene composites for energy storage/conversion applications and designing of electrochemical sensors for detection of different bioanalytes. To his credit, he has authored over 25 peer-reviewed papers published in international journals, as well as books and book chapters.
Sudarsan Raj, PhD, is currently working as a research associate at the CSIR-Institute of-Minerals and Materials Technology, Odisha, India. He was previously a postdoctoral research scientist at Nagoya University, Japan. His research output includes a number of authored and coauthored peer-reviewed journal articles and book chapters. His research interests include nanoparticle synthesis for LEDs, solar cells, gas sensors, automobile exhaust catalysts, and value-added-beach sand minerals.
Satyajit Ratha, PhD, has pursued his PhD at the Indian Institute of Technology Bhubaneswar, India. Prior to joining IIT Bhubaneswar, he received his Bachelor of Science with first class honors from Utkal University and his Master of Science from Ravenshaw University. His research interests include two-dimensional semiconductors, nanostructure synthesis applications, energy storage devices, and supercapacitors. He has authored and co-authored over 20 peer-reviewed papers published in international journals and 10 books.
Sudarsan Raj, PhD, is currently working as a research associate at the CSIR-Institute of-Minerals and Materials Technology, Odisha, India. He was previously a postdoctoral research scientist at Nagoya University, Japan. His research output includes a number of authored and coauthored peer-reviewed journal articles and book chapters. His research interests include nanoparticle synthesis for LEDs, solar cells, gas sensors, automobile exhaust catalysts, and value-added-beach sand minerals.
Satyajit Ratha, PhD, has pursued his PhD at the Indian Institute of Technology Bhubaneswar, India. Prior to joining IIT Bhubaneswar, he received his Bachelor of Science with first class honors from Utkal University and his Master of Science from Ravenshaw University. His research interests include two-dimensional semiconductors, nanostructure synthesis applications, energy storage devices, and supercapacitors. He has authored and co-authored over 20 peer-reviewed papers published in international journals and 10 books.
Cuprins
1. Biosensors: Current Trends and Future Perspectives 2. Functionalized Nanomaterials for Biosensing Application 3. Photonic Crystal Cavity-Based Sensors and Their Potential Applications 4. Metal Oxide Nanostructures for Gas Sensing Applications 5. Optical Biosensors for Diagnostic Applications 6. Metal-Free Electrode Materials for Electrochemical Biosensors 7. Noble Metal Nanoparticles-Based Composites for Gas Sensing: Progress and Perspective 8. Nanoparticles: A Noble Metal for Ultrasensitive Electrochemical Biosensing Affinity
Descriere
Describes sensing technology and emphasizes many biosensing techniques based on optical and electrochemical response methods. It provides overviews of advanced sensing methodologies based on photonic crystal cavity-based sensing devices and discusses electrochemical sensing, gas sensing, photo-electrochemical sensing, and colorimetric sensing.