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Advances in electronic materials for clean energy conversion and storage applications /

Advances in Electronic Materials for Clean Energy Conversion and Storage Applications reviews green synthesis and fabrication techniques of various electronic materials and their derivatives for applications in photovoltaics. The book investigates recent advances, progress and issues of photovoltaic...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Khan, Aftab Aslam Parwaz (Editor ), Nazim, Mohammed (Editor ), Asiri, Abdullah M. (Editor )
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Oxford : Woodhead Publishing, 2023.
Colección:Woodhead Publishing series in electronic and optical materials
Temas:
Acceso en línea:Texto completo

MARC

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245 0 0 |a Advances in electronic materials for clean energy conversion and storage applications /  |c edited by Aftab Aslam Parwaz Khan, Mohammed Nazim, Abdullah M. Asiri. 
264 1 |a Oxford :  |b Woodhead Publishing,  |c 2023. 
300 |a 1 online resource :  |b illustrations (black and white, and colour). 
336 |a text  |2 rdacontent 
336 |a still image  |2 rdacontent 
337 |a computer  |2 rdamedia 
338 |a online resource  |2 rdacarrier 
490 0 |a Woodhead Publishing series in electronic and optical materials 
500 |a <b>Part I: Advanced electronic materials for solar energy applications</b><br>1. Introduction to advanced electronic materials for solar energy applications<br>2. Advanced electronic materials for engineering energy applications<br>3. Carbon-based nanomaterials for solar energy<br>4. Quantum dots/Nanoparticles for solar energy<br>5. Organic semiconducting materials for solar energy<br>6. Small molecule organic solar cells<br>7. Polymer Organic Solar Cells<br>8. Metal halide hybrid perovskite materials for solar energy<br>9. Metal-halide perovskite nanomaterials and applications<br>10. Metal-halide perovskites for hybrid solar cells<br>11. Photon-downconversion materials for solar energy<br>12. Quantum dot as photon-downconversion materials<br>13. Organic dyes as photon-downconversion materials<br>14. Polymer-based nanocomposite for solar energy applications<br>15. Prospects and future perspective of electronic materials for solar cell applications<br><br><b>Part II. Advanced electronic materials for energy storage (supercapacitor and battery) applications</b><br>16. Introduction to advanced electronic materials for energy storage applications<br>17. Advanced electronic materials for engineering energy storage applications<br>18. Carbon-based nanomaterials for supercapacitor electrode materials<br>19. Transition metal oxide nanomaterials as electrodes for supercapacitor applications<br>20. Transition metal oxides as electrode materials<br>21. Graphene derivative/transition metal oxides nanocomposites as electrode materials<br>22. Polymers-based nanocomposite as electrode materials for supercapacitor applications<br>23. Transition metal oxide nanomaterials-based electrodes for battery applications<br>24. Carbon-based nanomaterials for battery applications<br>25. Graphene-derivative decorated transition-metal oxide nanocomposites for battery applications<br>26. Prospects and future perspective of nanomaterials for energy storage applications 
588 |a Description based on CIP data; resource not viewed. 
505 0 |a Part I: Advanced electronic materials for solar energy applications -- 1. Introduction to advanced electronic materials for solar energy applications -- 2. Advanced electronic materials for engineering energy applications -- 3. Carbon-based nanomaterials for solar energy -- 4. Quantum dots/Nanoparticles for solar energy -- 5. Organic semiconducting materials for solar energy -- 6. Small molecule organic solar cells -- 7. Polymer Organic Solar Cells -- 8. Metal halide hybrid perovskite materials for solar energy -- 9. Metal-halide perovskite nanomaterials and applications -- 10. Metal-halide perovskites for hybrid solar cells -- 11. Photon-downconversion materials for solar energy -- 12. Quantum dot as photon-downconversion materials -- 13. Organic dyes as photon-downconversion materials -- 14. Polymer-based nanocomposite for solar energy applications -- 15. Prospects and future perspective of electronic materials for solar cell applications -- Part II. Advanced electronic materials for energy storage (supercapacitor and battery) applications -- 16. Introduction to advanced electronic materials for energy storage applications -- 17. Advanced electronic materials for engineering energy storage applications -- 18. Carbon-based nanomaterials for supercapacitor electrode materials -- 19. Transition metal oxide nanomaterials as electrodes for supercapacitor applications -- 20. Transition metal oxides as electrode materials -- 21. Graphene derivative/transition metal oxides nanocomposites as electrode materials -- 22. Polymers-based nanocomposite as electrode materials for supercapacitor applications -- 23. Transition metal oxide nanomaterials-based electrodes for battery applications -- 24. Carbon-based nanomaterials for battery applications -- 25. Graphene-derivative decorated transition-metal oxide nanocomposites for battery applications -- 26. Prospects and future perspective of nanomaterials for energy storage applications. 
520 |a Advances in Electronic Materials for Clean Energy Conversion and Storage Applications reviews green synthesis and fabrication techniques of various electronic materials and their derivatives for applications in photovoltaics. The book investigates recent advances, progress and issues of photovoltaic-based research, including organic, hybrid, dye-sensitized, polymer, and quantum dot-based solar cells. There is a focus on applications for clean energy and storage in the book. Clean energy is defined as energy derived from renewable resources or zero-emission sources and natural processes that are regenerative and sustainable resources such as biomass, geothermal energy, hydropower, solar and wind energy. Materials discussed include nanomaterials, nanocomposites, polymers, and polymer-composites. Advances in clean energy conversion and energy storage devices are also reviewed thoroughly based on recent research and developments such as supercapacitors, batteries etc. Reliable methods to characterize and analyze these materials systems and devices are emphasized throughout the book. Important information on synthesis and analytical chemistry of these important systems are reviewed, but also material science methods to investigate optical properties of carbon-nanomaterials, metal oxide nanomaterials and their nanocomposites. Reviews the latest advances in electronic materials synthesis, fabrication and application in energy Discusses green, cost-effective, simple and large-scale production of electronic materials Includes critical materials and device characterization techniques that enhance our understanding of materials' properties and measure device performance. 
590 |a Knovel  |b ACADEMIC - Electronics & Semiconductors 
590 |a Knovel  |b ACADEMIC - Sustainable Energy & Development 
650 0 |a Clean energy. 
650 0 |a Energy conversion. 
650 0 |a Energy storage. 
650 0 |a Electronics  |x Materials. 
650 7 |a Clean energy.  |2 fast  |0 (OCoLC)fst01920487 
650 7 |a Electronics  |x Materials.  |2 fast  |0 (OCoLC)fst00907562 
650 7 |a Energy conversion.  |2 fast  |0 (OCoLC)fst00910026 
650 7 |a Energy storage.  |2 fast  |0 (OCoLC)fst00910245 
700 1 |a Khan, Aftab Aslam Parwaz,  |e editor. 
700 1 |a Nazim, Mohammed,  |e editor. 
700 1 |a Asiri, Abdullah M.,  |e editor.  |1 https://isni.org/isni/0000000493289930. 
776 0 8 |i Print version :  |z 9780323912068 
856 4 0 |u https://appknovel.uam.elogim.com/kn/resources/kpAEMCECS1/toc  |z Texto completo 
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994 |a 92  |b IZTAP