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Advancements in Nanotechnology for Electronics and Healthcare

From Materials to Applications

  • 1st Edition - March 1, 2027
  • Latest edition
  • Editors: Ratneshwar Kumar Ratnesh, Ramesh Kumar, Ramesh Chandra, Jay Singh
  • Language: English

Advancements in Nanotechnology for Electronics and Healthcare: From Materials to Applications provides a comprehensive overview on the foundational principles, cutting-edge applic… Read more

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Description

Advancements in Nanotechnology for Electronics and Healthcare: From Materials to Applications provides a comprehensive overview on the foundational principles, cutting-edge applications, and emerging trends related to applications of nanotechnology in electronics and healthcare. The book begins with a discussion on synthesis, fabrication, and characterization of nanomaterials, emphasizing their electronic, optical, and magnetic properties critical for device performance. Chapters also detail the integration of nanoscale structures in semiconductor manufacturing, flexible and wearable electronics, and high-speed computing architectures, including quantum dots, nanotubes, and nanowires. The application of AI-driven methods for nanomaterial design and process optimization is discussed, highlighting predictive modeling approaches. The following chapters focus on biomedical applications, reviewing topics such as plasmonic sensor development, nanocomposite ferrites for biomedical diagnostics, and nanoelectronics in minimally invasive medical devices. The book also addresses state-of-the-art nanofabrication techniques and discusses technical challenges related to scalability, material stability, and system integration. This book is a valuable resource for researchers and scientists who want to learn more about nanoscale materials and their diverse applications in electronics and biomedicine.

Key features

  • Reviews the integration of nanoscale structures in semiconductor manufacturing, flexible electronics, high-speed computing, and biomedical technologies
  • Discusses AI-driven nanomaterial design and process optimization, addressing advances and challenges
  • Covers the fundamental science of nanomaterial synthesis, fabrication, and characterization, with a focus on their electronic, optical, and magnetic properties

Readership

Academic and industrial researchers and graduate students in materials science and nanotechnology, as well as those interested in the applications of nanotechnology in electronics and biomedical sciences.

Table of contents

1. Nanotechnology: The Catalyst for Electronics

2. Nanoelectronics: Revolutionizing the Semiconductor Industry

3. Nanomaterials in Flexible and Wearable Electronics

4. AI-Driven Nanotechnology for Electronics Design, Optimization & Applications

5. Nanostructures in High-Speed Computing and Data Storage

6. Nanotechnology in Photonics and Optoelectronic Devices

7. Nanotechnology and Quantum Computing: Applications and Challenges

8. Nanotechnology-Driven Plasmonic Sensor for Electronics and Healthcare

9. Nanocomposite Ferrites for High-Frequency Electronics and Biomedical Diagnostics

10. The Role of Nanoelectronics in Advancing Minimally Invasive Medical Procedures

11. Emerging Nanofabrication Techniques for Electronics and Healthcare Applications

12. Nanotechnology in Healthcare: Advances in Drug Delivery, Tissue Engineering, and Regenerative Medicine

13. Nanotechnology and the Future: Forecasting the Impact on Electronics and Healthcare

Product details

  • Edition: 1
  • Latest edition
  • Published: March 1, 2027
  • Language: English

About the editors

RR

Ratneshwar Kumar Ratnesh

Ratneshwar Kumar Ratnesh is an Associate Professor of the Electronics & Communication Engineering Department at the Meerut Institute of Engineering and Technology, India. He received a B. Tech. degree in Electronics & Communication Engineering from UPTU, M. Tech degree in Nanotechnology from Jamia Millia Islamia Central University, India, and Ph.D. from Delhi Technological University, Delhi, India, in 2017. His current research interests include the development of very large-scale integrated circuits using nanotechnologies such as carbon nanotube field-effect transistor (CNTFET), flexible electronics, quantum dots-based (QDs) sensors, nano-antennas, robotics with AI, qubits, metamaterials, and thin-film technology. Furthermore, they are also associated with the synthesis, characterization, modelling, and simulation of smart semiconductor materials (CNTs and QDs) at the nanoscale.

Affiliations and expertise
Associate Professor, Meerut Institute of Engineering and Technology, India

RK

Ramesh Kumar

Engineering from the University of Rajasthan, India, in 2007, and his M.Tech. in Instrumentation & Control from Dr. B. R. Ambedkar National Institute of Technology Jalandhar in 2009. He earned his Ph.D. in Instrumentation from the same institute in 2019. From 2014 to 2019, he was a Research Scholar at the Signal Processing Laboratory, Dr. B. R. Ambedkar National Institute of Technology Jalandhar. Since 2009–2014 and from 2019 to the present, he has served as an Assistant Professor in the Electronics Department at various Indian colleges.

His research interests include biomedical instrumentation and tomography applications in both medical and industrial fields. He is currently working on applications related to CubeSat technology, fuel cells, and the renewable energy sector.

Affiliations and expertise
Assistant Professor, Chitkara University, India

RC

Ramesh Chandra

Prof. Ramesh Chandra is a distinguished scientist and Fellow of the Royal Society of Chemistry, London, recognized for his contributions to Biomedical Sciences. He currently serves as Vice-Chancellor of Maharaja Surajmal Brij University, Rajasthan, and is the Founder Director of the Dr. B. R. Ambedkar Center for Biomedical Research at the University of Delhi. Prof. Chandra has held prominent positions including Vice-Chancellor of Bundelkhand University and Head of the Department of Chemistry at the University of Delhi. He has also served as an official resource person to the Minister and Department of Science and Technology in Lesotho, South Africa. His research career spans prestigious institutions such as Cornell University, Rockefeller University, Harvard Medical School, and MIT.

He started his research career at the University of Delhi, then at The New York Hospital-Cornell University Medical College, and The Rockefeller University, New York; State University of New York at Stony brook, New York; Harvard University Medical School-Massachusetts General Hospital (MGH) jointly at MIT, Cambridge, MA, USA.

Prof. Chandra has been Vice-Chancellor, Bundelkhand University, Jhansi (1999-2005) as well as President of the Indian Chemical Society, Member, Planning Commission, Government of U.P. India; Secretary - Zaheer Science Foundation, New Delhi and Non-Official Director, Rashtriya Ispat Nigam Ltd, Government of India. He was also Head of the Department of Chemistry, University of Delhi.

He is recipient of several international recognitions: J. William Fulbright Scholarship, The Rockefeller Foundation USA-Biotechnology Career Award, Award of the Highest Honor of Soka University, Tokyo, Japan; Millennium Plaques of Honor (Life Time Achievement Award for contribution in Science & Technology) by the Indian Science Congress Association (ISCA), Lifetime Achievement Award of the Indian Chemical Society (ICS); UGC Research Scientist Award; UGC Career Award; Rajib Goyal Award for Young Scientists and others.

Prof. Chandra shows deep commitment to the cause of higher education & research and possesses in ample measure quality of dynamic leadership, vision required for building academic institutions and excelled in his academic pursuits. To illustrate, he has to his credit several international patents, 9 Books; 28 Book Chapters; and more than 387 original Scientific Research Papers in International journals of repute. He has mentored more than 100 Ph.D students.

Affiliations and expertise
Vice-Chancellor, Maharaja Surajmal Brij University, Bharatpur, Rajasthan, India

JS

Jay Singh

Jay Singh, PhD, is an Assistant Professor in the Department of Chemistry, Institute of Science, Banaras Hindu University, India. His research focuses on the chemical and biological synthesis of nanomaterials and the development of nanobiocomposites, conducting polymers, and self-assembled monolayers for sensor and biosensor applications. He develops enzyme-, antibody-, and DNA-based platforms for detecting clinically relevant bioanalytes, pathogens, pesticides, toxins, and gases. His current work includes sustainable metal oxide-based biosensors for clinical diagnostics, food packaging, drug delivery, and tissue engineering, as well as investigations of interfacial charge-transfer and sensing mechanisms in metal nanoparticles. He has conducted research projects supported by multiple funding agencies and has undertaken postdoctoral research at institutions in India and South Korea.

Affiliations and expertise
Assistant Professor, Department of Chemistry, Institute of Sciences, Banaras Hindu University, India