Photo-Electroactive Non-Volatile Memories for Data Storage and Neuromorphic Computing: Woodhead Publishing Series in Electronic and Optical Materials
Editat de Su-Ting Han, Ye Zhouen Limba Engleză Paperback – 27 mai 2020
This comprehensive, accessible and up-to-date book will be of particular interest to graduate students and researchers in solid-state electronics. It is an invaluable systematic introduction to the memory characteristics, operation principles and storage mechanisms of the latest reported electro-photoactive memory devices.
- Reviews the most promising materials to enable emerging computing memory and data storage devices, including one- and two-dimensional materials, metal oxides, semiconductors, organic materials, and more
- Discusses fundamental mechanisms and design strategies for two- and three-terminal device structures
- Addresses device challenges and strategies to enable translation of optical and optoelectronic technologies
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Specificații
ISBN-13: 9780128197172
ISBN-10: 012819717X
Pagini: 352
Ilustrații: 60 illustrations (20 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.48 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Electronic and Optical Materials
ISBN-10: 012819717X
Pagini: 352
Ilustrații: 60 illustrations (20 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.48 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Electronic and Optical Materials
Public țintă
Materials Scientists and Engineers in academic and R&D, and Electrical EngineersCuprins
1. Introduction to photo-electroactive non-volatile memory
2. Characteristics and mechanisms in resistive switching memories
3. Memory characteristics and mechanisms in transistor based memories
4. Two-terminal optoelectronic memory device
5. Three-terminal optoelectronic memory device
6. Synaptic devices based on organic field-effect transistors
7. Ionic synergetically coupled electrolyte gated transistors for neuromorphic engineering applications
8. One-dimensional materials for photo-electroactive memories and synaptic devices
9. Novel photo-electroactive memories and neuromorphic devices based on nanomaterials
10. Organic and Hybrid Photo-Electroactive Polymer for Memories and Neuromorphic Computing
11. Metal oxide materials for photo-electroactive memories and neuromorphic computing systems
12. Perovskites for photo-tunable memories and neuromorphic computing
13. Chalcogenide materials for optoelectronic memory and neurmorphic computing
14. Device challenges, possible strategies and conclusions
2. Characteristics and mechanisms in resistive switching memories
3. Memory characteristics and mechanisms in transistor based memories
4. Two-terminal optoelectronic memory device
5. Three-terminal optoelectronic memory device
6. Synaptic devices based on organic field-effect transistors
7. Ionic synergetically coupled electrolyte gated transistors for neuromorphic engineering applications
8. One-dimensional materials for photo-electroactive memories and synaptic devices
9. Novel photo-electroactive memories and neuromorphic devices based on nanomaterials
10. Organic and Hybrid Photo-Electroactive Polymer for Memories and Neuromorphic Computing
11. Metal oxide materials for photo-electroactive memories and neuromorphic computing systems
12. Perovskites for photo-tunable memories and neuromorphic computing
13. Chalcogenide materials for optoelectronic memory and neurmorphic computing
14. Device challenges, possible strategies and conclusions