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Fundamentals of Sensor Technology: Principles and Novel Designs (Woodhead Publishing Series in Electronic and Optical Materials) - Softcover

 
9780323884310: Fundamentals of Sensor Technology: Principles and Novel Designs (Woodhead Publishing Series in Electronic and Optical Materials)

Inhaltsangabe

Fundamentals of Sensor Technology: Principles and Novel Designs presents an important reference on the materials, platforms, characterization and fabrication methods used in the development of chemical sensor technologies. Sections provide the historical context of sensor technology development, review principles for the design of sensing devices and circuits, delve into the most common chemical and biological sensor types, cover unique properties and performance requirements, discuss fabrication techniques, including defining critical parameters, modeling and simulation strategies, and present important materials categories used in sensing applications, such as nanomaterials, quantum dots, magnetic materials, and more.This book is appropriate for the interdisciplinary community of researchers and practitioners interested in the development of sensor technologies, including materials scientists and engineers, analytical chemists and other related disciplines.

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Über die Autorinnen und Autoren

Dr. Ahmed Barhoum is an Associate Professor of nanomaterials science and Head of the Nanostruc Research Group (Helwan University). He is currently working at the DCU University (Ireland). His research interests include the synthesis of nanomaterials for catalysis, drug delivery, and biosensing. He has won several scientific awards and prizes: Helwan University Prizes (Egypt, 2020 & 2019), CAS Fellowship (China, 2019), IFE Fellowships (France, 2012 & 2018), FWO Fellowships (Belgium, 2015 & 2016), Medastar Erasmus Mundus (Belgium, 2012), Welcome Program (Italy, 2012) and many more. He serves as an expert evaluator for the National Science Centre (NCN, Poland), Czech Science Foundation (GACR, Russia), Swiss National Science Foundation (SNSF, Switzerland), and Innovators Support Fund (ISF, Egypt), among others. He is on the editorial board of Frontiers in Bioengineering and Biotechnology, Frontiers in Nanotechnology, Nanomaterials, and editor of 10 handbooks (Elsevier and Springer Nature), PI/Co-PI of 12 projects, and co-author of 150 publications.

Zeynep Altintas is a full professor and the Chair of Bioinspired Materials and Biosensor Technologies at the University of Kiel, Germany. She has been the Head of Biosensors and Receptor Development Group at the Technical University of Berlin since 2016. She completed her Ph.D. on biomedical sensors at the age of 25 with the outstanding Ph.D. student award. Her Ph.D. period brought her several other research prizes and fellowships. Following a one-year postdoc position at the Cranfield Biotechnology Centre, she continued her academic career as a faculty member of Biomedical Engineering at Cranfield University (the UK) until 2016. She leads an interdisciplinary research group in the domains of biosensor technologies, computational chemistry, receptor design, functional polymers and their applications in (bio)chemical sciences, nanomaterials applications, and design, synthesis, and characterization of biomimetic materials.

Von der hinteren Coverseite

Fundamentals of Sensor Technology is an important reference on the materials, platforms, characterization and fabrication methods for the development of chemical sensor technologies.

The book is organized in five parts. Part I provides the historical context of sensor technology development and reviews the principles for the design of sensing devices and circuits as well as other important aspects. Part II reviews the most common chemical and biological sensor types with particular focus on their design and the materials used. There is also emphasis on the unique properties and performance requirements for each sensor type and how this can be obtained through modification of the materials and device design. Nanosensor fabrication techniques are reviewed for each sensor type including defining critical parameters, modelling and simulation strategies, and device characterization methods. Part III discusses the most important materials categories used for sensing applications such as nanomaterials, quantum dots, magnetic materials and more. Part IV reviews the most common sensor platforms with a focus on platforms that would enable new form factors. Finally, Part V discusses the future research directions of the development of sensor technologies including challenges and opportunities.

Fundamentals of Sensor Technology is appropriate for the interdisciplinary community of researchers and practitioners interested in the development of sensor technologies. This includes materials scientists and engineers, analytical chemists and other related disciplines.

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