Nano-Dimensional Zinc Oxide for Energy Harvesting, Sensing and Environmental Remediation
Herausgeber: Kumar, Naveen; Singla, Shivani; Aggarwal, Nupur
Nano-Dimensional Zinc Oxide for Energy Harvesting, Sensing and Environmental Remediation
Herausgeber: Kumar, Naveen; Singla, Shivani; Aggarwal, Nupur
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Zinc oxide (ZnO) nanostructures have gained significant attention in recent years due to their applications in various fields. The book provides a comprehensive overview of the recent advances in ZnO-based nanostructures for energy harvesting, sensing, and environmental remediation applications.
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Zinc oxide (ZnO) nanostructures have gained significant attention in recent years due to their applications in various fields. The book provides a comprehensive overview of the recent advances in ZnO-based nanostructures for energy harvesting, sensing, and environmental remediation applications.
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Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 280
- Erscheinungstermin: 15. Juli 2025
- Englisch
- Abmessung: 234mm x 156mm
- Gewicht: 453g
- ISBN-13: 9781032734453
- ISBN-10: 1032734450
- Artikelnr.: 72876891
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 280
- Erscheinungstermin: 15. Juli 2025
- Englisch
- Abmessung: 234mm x 156mm
- Gewicht: 453g
- ISBN-13: 9781032734453
- ISBN-10: 1032734450
- Artikelnr.: 72876891
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Dr. Nupur Aggarwal is working as an Associate Professor at Chandigarh University, India, where she spearheads interdisciplinary research in materials science. Her work focuses on the synthesis of metal oxide nanoparticles, targeting applications in optoelectronics and spintronics. Over the past nine years, Dr. Aggarwal has delved deeply into the field of dilute magnetic semiconductors, striving to unlock new potentials in electronic and spintronic devices by enhancing their magnetic and electrical properties. With more than 45 research publications in reputed SCI and SCOPUS-indexed journals, Additionally, she plays a vital role as a reviewer and editor for esteemed journals, including the American Journal of Nano Research and Applications (NANO), PLOS ONE, and Frontiers in Nanotechnology, where she helps shape the direction of future research in nanotechnology. Dr. Naveen Kumar is an Associate professor in the Department of Physics at Chandigarh University, India. He works on interdisciplinary research fields involving very recent and technologically significant strands: the synthesis of multiferroics for dielectric and ferroelectric studies. He has been working in the field of magnetic ferrites such as BiFeO3, Fe3O4, and Mg0.05Zn0.05Fe2O4 for the past 8 years and has published more than 70 research articles in peer-reviewed SCI/SCOPUS indexed journals and several research papers in international conferences. He is also an editor of reputed journals such as the American Journal of Nano Research and Applications (NANO), Concepts in Magnetic Resonance Part A, PLOS ONE, and Synthesis, Characterization and Processing of New Materials for Innovative Applications. Dr. Shivani Singla, Assistant Professor at Chandigarh University, India, excels in interdisciplinary materials science, specializing in the synthesis and characterization of advanced glass and glass-ceramic materials for optics, photonics, and radiation shielding. Her research delves into nanoparticle interactions in glass matrices, enabling advancements in display technologies, cancer detection, and shielding applications. With over 20 publications in leading journals and 10+ presentations at global conferences, Dr. Singla's work has driven innovations in materials science, earning patents in optical materials and education technology.
1. Synthesis Techniques for Zno Nanostructures 2. Solar Cell Properties of
ZnO-based Nanostructures 3. Environmental Applications of ZnO
Nanostructures 4. Piezoelectric characteristics of ZnO nanostructures 5.
Antimicrobial Characteristics Of Zno Nanostructures 6. Zno Nanostructures
For Ultraviolet Photodetectors 7. ZnO Nanostructures based Electrochemical
Sensors for Medical Applications 8. Photocatalytic Activity of ZnO
Nanoparticles 9. ZnO Nanostructures: A Potential Candidate for Gas Sensing
10. Application of ZnO nanostructures for plant growth and development 11.
Efficacy of ZnO Adsorbents in Heavy Metal Detection and Removal 12. Future
Prospective and Directions for ZnO Nanostructures
ZnO-based Nanostructures 3. Environmental Applications of ZnO
Nanostructures 4. Piezoelectric characteristics of ZnO nanostructures 5.
Antimicrobial Characteristics Of Zno Nanostructures 6. Zno Nanostructures
For Ultraviolet Photodetectors 7. ZnO Nanostructures based Electrochemical
Sensors for Medical Applications 8. Photocatalytic Activity of ZnO
Nanoparticles 9. ZnO Nanostructures: A Potential Candidate for Gas Sensing
10. Application of ZnO nanostructures for plant growth and development 11.
Efficacy of ZnO Adsorbents in Heavy Metal Detection and Removal 12. Future
Prospective and Directions for ZnO Nanostructures
1. Synthesis Techniques for Zno Nanostructures 2. Solar Cell Properties of
ZnO-based Nanostructures 3. Environmental Applications of ZnO
Nanostructures 4. Piezoelectric characteristics of ZnO nanostructures 5.
Antimicrobial Characteristics Of Zno Nanostructures 6. Zno Nanostructures
For Ultraviolet Photodetectors 7. ZnO Nanostructures based Electrochemical
Sensors for Medical Applications 8. Photocatalytic Activity of ZnO
Nanoparticles 9. ZnO Nanostructures: A Potential Candidate for Gas Sensing
10. Application of ZnO nanostructures for plant growth and development 11.
Efficacy of ZnO Adsorbents in Heavy Metal Detection and Removal 12. Future
Prospective and Directions for ZnO Nanostructures
ZnO-based Nanostructures 3. Environmental Applications of ZnO
Nanostructures 4. Piezoelectric characteristics of ZnO nanostructures 5.
Antimicrobial Characteristics Of Zno Nanostructures 6. Zno Nanostructures
For Ultraviolet Photodetectors 7. ZnO Nanostructures based Electrochemical
Sensors for Medical Applications 8. Photocatalytic Activity of ZnO
Nanoparticles 9. ZnO Nanostructures: A Potential Candidate for Gas Sensing
10. Application of ZnO nanostructures for plant growth and development 11.
Efficacy of ZnO Adsorbents in Heavy Metal Detection and Removal 12. Future
Prospective and Directions for ZnO Nanostructures