This book presents a comprehensive overview of state-of-the-art quantum dot photodetectors, including device fabrication technologies, optical engineering/manipulation strategies, and emerging photodetectors with building blocks of novel quantum dots (e.g. perovskite) as well as their hybrid structured (e.g. 0D/2D) materials. Semiconductor quantum dots have attracted much attention due to their unique quantum confinement effect, which allows for the facile tuning of optical properties that are promising for next-generation optoelectronic applications. Among these remarkable properties are large absorption coefficient, high photosensitivity, and tunable optical spectrum from ultraviolet/visible to infrared region, all of which are very attractive and favorable for photodetection applications. The book covers both fundamental and frontier research in order to stimulate readers' interests in developing novel ideas for semiconductor photodetectors at the center of future developments inmaterials science, nanofabrication technology and device commercialization. The book provides a knowledge sharing platform and can be used as a reference for researchers working in the fields of photonics, materials science, and nanodevices.

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This book presents a comprehensive overview of state-of-the-art quantum dot photodetectors, including device fabrication technologies, optical engineering/manipulation strategies, and emerging photodetectors with building blocks of novel quantum dots (e.g.

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Chapter 1. Progress in quantum dot infrared photodetectors.- Chapter 2. Photodetectors based on Perovskite Quantum Dots.- Chapter 3. Photoconductive Detectors Based on Perovskite Quantum Dots or Nanocrystals: From Lead-Based System to Lead-Free System.- Chapter 4. Solution-processable Carbon and Graphene Quantum Dots Photodetectors.- Chapter 5. Quantum Dot/Graphene Heterostructure Nanohybrid Photodetectors.- Chapter 6. Two Dimensional Materials based Quantum Dots for Wavelength Selective, Tunable and Broadband Photodetector Devices.- Chapter 7. Self-Assembled Quantum Dot Photodetector-A Pathbreaker in the Field of Optoelectronics.

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This book presents a comprehensive overview of state-of-the-art quantum dot photodetectors, including device fabrication technologies, optical engineering/manipulation strategies, and emerging photodetectors with building blocks of novel quantum dots (e.g. perovskite) as well as their hybrid structured (e.g. 0D/2D) materials. Semiconductor quantum dots have attracted much attention due to their unique quantum confinement effect, which allows for the facile tuning of optical properties that are promising for next-generation optoelectronic applications. Among these remarkable properties are large absorption coefficient, high photosensitivity, and tunable optical spectrum from ultraviolet/visible to infrared region, all of which are very attractive and favorable for photodetection applications. The book covers both fundamental and frontier research in order to stimulate readers' interests in developing novel ideas for semiconductor photodetectors at the center of future developments inmaterials science, nanofabrication technology and device commercialization. The book provides a knowledge sharing platform and can be used as a reference for researchers working in the fields of photonics, materials science, and nanodevices.

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Provides an overview of conventional and emerging quantum dot photodetectors Introduces various technologies to improve the performance of quantum dot photodetectors Covers optoelectronic manipulation and rational design of device structure to support the further development of quantum dot optoelectronics
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GPSR Compliance The European Union's (EU) General Product Safety Regulation (GPSR) is a set of rules that requires consumer products to be safe and our obligations to ensure this. If you have any concerns about our products you can contact us on ProductSafety@springernature.com. In case Publisher is established outside the EU, the EU authorized representative is: Springer Nature Customer Service Center GmbH Europaplatz 3 69115 Heidelberg, Germany ProductSafety@springernature.com
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Produktdetaljer

ISBN
9783030742720
Publisert
2022-09-18
Utgiver
Vendor
Springer Nature Switzerland AG
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet

Biographical note

Xin Tong is a Research Professor of UESTC-100 Talents Plan at University of Electronic Science and Technology of China. He obtained his B.E. degree in Electronic Science and Technology (2014) and his Ph.D. degree in Materials Science and Engineering (2019) from University of Electronic Science and Technology of China. His research interests focus on the synthesis and optical engineering of colloidal quantum dots for optoelectronics.

Jiang Wu is a Professor at University of Electronic Science and Technology of China. Dr. Wu received his PhD degree in Electrical Engineering from the University of Arkansas-Fayetteville in 2011. He was with UESTC as an Associate Professor and then Professor at UESTC from 2011 to 2015. He joined the Photonics group at University College London as a Research Associate in 2012. From 2015, he was a Lecturer at UCL. Since 2019, he has been a Full Professor at UESTC. He is a Fellow of Higher Education Academy, IEEE Senior Member, and Chinese Society for Optical Engineering Senior Member. His current interest is mainly focused on emerging quantum dots and perovskite photodetectors.

Zhiming M. Wang is a Professor of National Distinguished Experts at University of Electronic Science and Technology of China. He received a B.S. in Applied Physics from Qingdao University (1992), an M.S. in Physics from Peking University (1995), and a Ph.D. in Condensed Matter Physics from the Chinese Academy of Sciences (1998). He is a Fellow of the Optical Society of America (OSA), Fellow of the Royal Society of Chemistry (RSC), Fellow of the Institute of Physics (IoP), Fellow of the Institute of Materials, Minerals and Mining (IMMM) and Fellow of the Institution of Engineering and Technology (IET). His research interests include the rational design of low-dimensional semiconductor nanomaterials for optoelectronic applications.