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Metal Oxides for Non-volatile Memory
Materials, Technology and Applications

One-stop reference on the metal oxides materials system, with discussions of its properties, design and fabrication considerations for nonvolatile memory technologies

Panagiotis Dimitrakis (Edited by), Ilia Valov (Edited by), Stefan Tappertzhofen (Edited by)

9780128146293, Elsevier Science

Paperback, published 3 March 2022

536 pages
22.9 x 15.2 x 3.3 cm, 0.86 kg

Metal Oxides for Non-volatile Memory: Materials, Technology and Applications covers the technology and applications of metal oxides (MOx) in non-volatile memory (NVM) technology. The book addresses all types of NVMs, including floating-gate memories, 3-D memories, charge-trapping memories, quantum-dot memories, resistance switching memories and memristors, Mott memories and transparent memories. Applications of MOx in DRAM technology where they play a crucial role to the DRAM evolution are also addressed. The book offers a broad scope, encompassing discussions of materials properties, deposition methods, design and fabrication, and circuit and system level applications of metal oxides to non-volatile memory.

Finally, the book addresses one of the most promising materials that may lead to a solution to the challenges in chip size and capacity for memory technologies, particular for mobile applications and embedded systems.

1. Introduction to non-volatile memory 2. Resistive switching in metal-oxide memristive materials and devices 3. Charge trapping NVMs with metal oxides in the memory stack 4. Technology and neuromorphic functionality of magnetron-sputtered memristive devices 5. Metalorganic chemical vapor deposition of aluminum oxides: A paradigm on the process-structure-properties relationship 6. MOx materials by ALD method 7. Nano-composite MOx materials for NVMs 8. MOx in ferroelectric memories 9. “Metal oxides in magnetic memories?: Current status and future perspectives 10. Correlated transition metal oxides and chalcogenides for Mott memories and neuromorphic applications 11. The effect of external stimuli on the performance of memristive oxides 12. MOX for NVM on graphene and 2D materials 13. Ubiquitous memristors on-chip in multi-level memory, in-memory computing, data converters, clock generation and signal transmission 14. Neuromorphic applications using MOx-based memristors

Subject Areas: Electronics & communications engineering [TJ], Materials science [TGM]

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