
Perovskite Quantum Dots
Synthesis, Properties and Applications
Series: Springer Series in Materials Science; 303;
- Publisher's listprice EUR 171.19
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72 618 Ft
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Estimated delivery time: In stock at the publisher, but not at Prospero's office. Delivery time approx. 3-5 weeks.
Not in stock at Prospero.
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Product details:
- Edition number 1st ed. 2020
- Publisher Springer
- Date of Publication 28 August 2021
- Number of Volumes 1 pieces, Book
- ISBN 9789811566394
- Binding Paperback
- No. of pages374 pages
- Size 235x155 mm
- Weight 599 g
- Language English
- Illustrations 3 Illustrations, black & white; 182 Illustrations, color 233
Categories
Short description:
This book addresses perovskite quantum dots, discussing their unique properties, synthesis, and applications in nanoscale optoelectronic and photonic devices, as well as the challenges and possible solutions in the context of device design and the prospects for commercial applications. It particularly focuses on the luminescent properties, which differ from those of the corresponding quantum dots materials, such as multicolor emission, fluorescence narrowing, and tunable and switchable emissions from doped nanostructures. The book first describes the characterization and fabrication of perovskite quantum dots. It also provides detailed methods for analyzing the electrical and optical properties, and demonstrates promising applications of perovskite quantum dots. Furthermore, it presents a series of optoelectronic and photonic devices based on functional perovskite quantum dots, and explains the incorporation of perovskite quantum dots in semiconductor devices and their effect of the performance. It also explores the challenges related to optoelectronic devices, as well as possible strategies to promote their commercialization. As such, this book is a valuable resource for graduate students and researchers in the field of solid-state materials and electronics wanting to gain a better understanding of the characteristics of quantum dots, and the fundamental optoelectronic properties and operation mechanisms of the latest perovskite quantum dot-based devices.
MoreLong description:
This book addresses perovskite quantum dots, discussing their unique properties, synthesis, and applications in nanoscale optoelectronic and photonic devices, as well as the challenges and possible solutions in the context of device design and the prospects for commercial applications. It particularly focuses on the luminescent properties, which differ from those of the corresponding quantum dots materials, such as multicolor emission, fluorescence narrowing, and tunable and switchable emissions from doped nanostructures. The book first describes the characterization and fabrication of perovskite quantum dots. It also provides detailed methods for analyzing the electrical and optical properties, and demonstrates promising applications of perovskite quantum dots. Furthermore, it presents a series of optoelectronic and photonic devices based on functional perovskite quantum dots, and explains the incorporation of perovskite quantum dots in semiconductor devices and their effect of the performance. It also explores the challenges related to optoelectronic devices, as well as possible strategies to promote their commercialization. As such, this book is a valuable resource for graduate students and researchers in the field of solid-state materials and electronics wanting to gain a better understanding of the characteristics of quantum dots, and the fundamental optoelectronic properties and operation mechanisms of the latest perovskite quantum dot-based devices.
MoreTable of Contents:
Photo-electroactive perovskite quantum dots: technologies and prospects.- Physical and Optical properties of perovskite quantum dots.- Synthesis of perovskite quantum dots.- Origins of the instability of perovskite quantum dot.- Strategies towards improving the stability of perovskite quantum dots.- Perovskite quantum dots based solar cell.- Perovskite quantum dots based light-emitting diode.- Perovskite quantum dots for photo-electroactive memories and neuromorphic computing systems.- Other perovskite quantum dots based phototransistor.- Device challenges, possible strategies and Conclusions.
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