Textile-Based Piezoelectric Nanogenerators: Advances and Perspectives

· ·
· Elsevier
Libër elektronik
550
Faqe
I përshtatshëm
Ky libër do të ofrohet në datën 1 janar 2026. Deri në publikimin e tij nuk do të tarifohesh.

Rreth këtij libri elektronik

Textile-Based Piezoelectric Nanogenerators: Advances and Perspectives reviews materials, fabrication methods, and applications of piezoelectric textile materials for smart wearable systems and portable electronic technologies. In the book, current achievements in piezoelectric nanogenerators are summarized, and applications of the textile-based piezoelectric nanogenerators in the fields of sensing, structural health monitoring, and energy harvesting are discussed. Drawbacks and opportunities in these areas are also investigated, making this reference suitable for materials scientists and engineers in academia and R&D. - Introduces textile-based piezoelectric materials used for energy harvesting from mechanical energy waste - Covers fabrication of piezoelectric nanogenerators in conventional textiles for the development of next-generation wearable energy harvesters - Provides systematic and comprehensive coverage of the topic and highlights current and potential applications of textile-based piezoelectric nanogenerators for further investigation

Rreth autorit

Shahid Ul Islam is an Assistant Professor in the Department of Applied Sciences and Humanities at Jamia Millia Islamia, New Delhi, India. He works at the interface of materials science and textile engineering, with an emphasis on the functionalization of textile and polymeric materials for use in different applications.

Wazed Ali is an Associate Professor in the Department of Textile and Fiber Engineering at the Indian Institute of Technology Delhi, India. His research areas broadly include nanofibrous web for energy, nanocomposite-based flexible triboelectric materials, and green chemistry in textiles.

Satyaranjan Bairagi is a Postdoctoral Fellow at the University of Glasgow, Scotland. His research interests include development of nanotechnology-based piezoelectric and triboelectric materials for nanogenerators, as well as textile-based flexible advanced materials for renewable energy harvesting.

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