AI-Driven Innovations in Electrochemical Technologies for Sustainable Energy Solutions

Editors: Shreya Sharma, Peeyush Phogat, Ranjana Jha, Sukhvir Singh

AI-Driven Innovations in Electrochemical Technologies for Sustainable Energy Solutions

ISBN: 979-8-89881-187-7
eISBN: 979-8-89881-186-0 (Online)

Introduction

AI-Driven Innovations in Electrochemical Technologies for Sustainable Energy Solutions blends principles of data science, materials engineering, and energy technology to offer a forward-looking exploration of how Artificial Intelligence is reshaping the design, optimisation, and performance of electrochemical technologies.

Across nine well-structured chapters, the book progresses from foundational principles of AI-integrated electrochemical systems to advanced applications in batteries, fuel cells, supercapacitors, and electrolysers. Topics include AI-assisted materials discovery, performance optimisation, real-time monitoring, predictive maintenance, and system-level energy management. Ethical, environmental, and policy considerations surrounding AI adoption are also examined, along with case studies that demonstrate real-world impact.

With its interdisciplinary perspective and emphasis on practical innovations, this book equips readers with a deep understanding of how AI reduces experimentation time, streamlines design processes, and drives next-generation sustainable energy solutions.

Key Features

  • - Comprehensive coverage of AI-enhanced electrochemical systems.
  • - Real-world case studies and application-driven insights.
  • - Focus on AI-assisted material discovery, optimisation, and predictive maintenance.
  • - Discussions on the ethical, environmental, and policy dimensions.
  • - Forward-looking perspectives on integrating AI with sustainable energy and healthcare technologies.

Target Readership:

Researchers, scientists, graduate students and industry professionals in electrochemistry, materials science, renewable energy, and AI.

Contributors

Editor(s):
Shreya Sharma
Netaji Subhas University of Technology
New Delhi
India


Peeyush Phogat
Netaji Subhas University of Technology
New Delhi
India


Ranjana Jha
Netaji Subhas University of Technology
New Delhi
India


Sukhvir Singh
Netaji Subhas University of Technology
New Delhi
India




Contributor(s):
Aman Grewal
Academy of Scientific and Innovative Research (AcSIR)
Ghaziabad-201002
India
/
Advanced Materials & Instrumentation
CSIR-Central Scientific Instruments Organisation
Chandigarh-160030
India


Amandeep Kaur
Academy of Scientific and Innovative Research (AcSIR)
Ghaziabad-201002
India
/
Advanced Materials & Instrumentation
CSIR-Central Scientific Instruments Organisation
Chandigarh-160030
India


Anshi Pandey
Research Lab for Energy Systems, Department of Physics
Netaji Subhas University of Technology
Dwarka, New Delhi
India


Anuj Sharma
Advanced Materials & Instrumentation
CSIR-Central Scientific Instruments Organisation
Chandigarh-160030
India


Ashna Verma
Research Lab for Energy Systems, Department of Physics
Netaji Subhas University of Technology
Dwarka, New Delhi
India


Deepa Sharma
Department of Chemistry
Netaji Subhas University of Technology
Dwarka, New Delhi-110078
India


Dushyant Kumar
Department of Physics
Indian Institute of Technology Jodhpur
Rajasthan-342030
India


Jahanvi Thakur
Research Lab for Energy Systems, Department of Physics
Netaji Subhas University of Technology
Dwarka, New Delhi
India


Jyoti Jangra
Academy of Scientific and Innovative Research (AcSIR)
Ghaziabad-201002
India
/
Advanced Materials & Instrumentation
CSIR-Central Scientific Instruments Organisation
Chandigarh-160030
India


M.S. Sumitha
Centre for Advanced Materials Research, Department of Physics
Government College for Women, University of Kerala
Thiruvananthapuram
India


N. L. Singh
Department of Nanotechnology
Delhi Skill and Entrepreneurship University
Dwarka, New Delhi
India


Parneet Kaur
Advanced Materials & Instrumentation
CSIR-Central Scientific Instruments Organisation
Chandigarh-160030
India


Prashanth S. Adarakatti
Department of Chemistry
SVM Arts, Science and Commerce College
Ilkal
India


Priya Gupta
School of Basic and Applied Sciences
K.R. Mangalam University
Gurugram, Haryana
India


Purnima Jain
Department of Chemistry
Netaji Subhas University of Technology
Dwarka, New Delhi-110078
India


Ritika Khatri
School of Basic and Applied Sciences
K.R. Mangalam University
Gurugram, Haryana
India


Satyam Rawat
Research Lab for Energy Systems, Department of Physics
Netaji Subhas University of Technology
Dwarka, New Delhi
India


Shavita Salora
Academy of Scientific and Innovative Research (AcSIR)
Ghaziabad-201002
India
/
Advanced Materials & Instrumentation
CSIR-Central Scientific Instruments Organisation
Chandigarh-160030
India


Shilpi Sehrawat
Department of Chemistry
Netaji Subhas University of Technology
Dwarka, New Delhi-110078
India


Shubham Kumar Patial
Academy of Scientific and Innovative Research (AcSIR)
Ghaziabad-201002
India
/
Advanced Materials & Instrumentation
CSIR-Central Scientific Instruments Organisation
Chandigarh-160030
India


Soumya Rai
Research Lab for Energy Systems, Department of Physics
Netaji Subhas University of Technology
Dwarka, New Delhi
India


Suman Singh
Academy of Scientific and Innovative Research (AcSIR)
Ghaziabad-201002
India
/
Advanced Materials & Instrumentation
CSIR-Central Scientific Instruments Organisation
Chandigarh-160030
India


Suman Srivastava
Department of Chemistry
M.V. College Buxar (A Constituent Unit of Veer Kunwar Singh University Ara)
Bihar
India


T.S Xavier
Centre for Advanced Materials Research, Department of Physics
Government College for Women, University of Kerala
Thiruvananthapuram
India


Tarun Kumar
Department of Physics
Indian Institute of Technology Jodhpur
Rajasthan-342030
India