Ummer / Norek / Thomas | Tailoring Light Emission with Nanostructured Materials | Buch | 978-0-443-44813-3 | www.sack.de

Buch, Englisch, Format (B × H): 152 mm x 229 mm

Ummer / Norek / Thomas

Tailoring Light Emission with Nanostructured Materials


Erscheinungsjahr 2027
ISBN: 978-0-443-44813-3
Verlag: Elsevier Science & Technology

Buch, Englisch, Format (B × H): 152 mm x 229 mm

ISBN: 978-0-443-44813-3
Verlag: Elsevier Science & Technology


Tailoring Light Emission with Nanostructured Materials provides a comprehensive overview of the latest advances and emerging technologies in the field of nanostructured light emitters, offering insights into potential research directions. It explores the theoretical foundations, experimental techniques, and characterization methods used in the development of novel light emitters in various industries, including electronics, lighting, displays, and medical devices. The book provides up-to-date information on the latest innovations in nanostructured materials for light emitting applications, providing valuable insights into the latest materials, fabrication techniques, and applications that are driving innovation in this sector. It covers a range of applications, from medical devices and environmental sensors to consumer electronics and communication systems, providing practical examples in all cases. Identifying and applying the right light-emitting materials for specific applications across various industries can be challenging, and finding efficient yet cost-effective materials for light emitters is a common concern for researchers and industry professionals. This book addresses both of these challenges in addition to considering the environmental impact of various materials, discussing sustainable alternatives and practices in the development and application of light emitters.

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Weitere Infos & Material


Part 1 – Fundamentals
1. History and Development of Light Emitters
2. Advanced Light Emitting Materials
3. Nanostructured Light Emitters
4. Theory, calculations, modelling and simulation for Light Emitters

Part II – Light Emitting Materials and Their Synthesis
5. Nanowires and Nanorods for Light Emitting Application
6. Semiconductor Nanostructures for Light Emitting Application
7. Nanostructured White Light Emitters
8. Perovskite Nanostructured Light Emitters
9. Photonic crystal Light Emitters
10. Carbon based Nano Light Emitters
11. Multiple Quantum Dot Light Emitting Diodes
12. Organic Light Emitting Diodes
13. Polymer Nano Composites for Light Emitting Devices and Displays

Part III – Applications
14. Light Emitters in wearable technology
15. Medical Applications of Light Emitters
16. Light Emitters for Cancer Therapy (LED Therapy)
17. Sensing Applications of Light Emitters
18. Nano structured Light Emitters for Telecommunications

Part IV – Current and future prospects of light emitting materials
19. The current market for Light Emitting materials and products
20. Life Cycle Assessment
21. AI/ML Techniques for Designing Nanostructured Materials for Light emission


Ummer, Rehana P.
Rehana Ummer is a teaching faculty at the Centre for Nanoscience and Nanotechnology, Mahatma Gandhi University, Kottayam, India. Her research area covers water purification, photocatalysis, sustainable energy and environment, polymer nanocomposites, electromagnetic shielding, magnetic materials, and biomedical applications of nanomaterials.

Thomas, Sabu
Prof. Sabu Thomas is a globally renowned scientist and one of the leading researchers in polymer science and nanotechnology. He currently serves as Professor of Polymer Science & Engineering and was the former Vice Chancellor of Mahatma Gandhi University, Kerala, India. Prof. Thomas is internationally recognized for his pioneering work on polymer blends, nanocomposites, green materials, and sustainable polymers.

Norek, Malgorzata
Malgorzata Norek an Associate Professor at the Military University of Technology in Warsaw, Poland. Her current scientific interests focus on porous materials, semiconducting nanostructures, and nanocomposites for optical, sensing, and optoelectronic applications.



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