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April 16, 2024Advances in Physics X2 citationsOpen Access

Reconfigurable nanoionic and photoionic material and device platforms

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AEAhmed H. ElfarashBGBehrad Gholipour

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Abstract

Nanoionic and photoionic reconfigurable oxides and chalcogenide semiconductors are emerging material platforms for field-based, non-volatile control of electrons and photons in nanoscale optoelectronic device architectures. Their potential low-power requirements, athermal switching mechanism and mixed-mode operation, have facilitated the demonstration of a wealth of highly promising application-driven optoelectronic devices over the last decade that address growing global demands requiring low-power, high-speed, and high-density data storage and signal modulation in ultra-compact architectures. This review highlights advancements in such ion-migration-based materials, fundamental mechanisms, device architectures, and their impact on the observed reconfigurable performance with a view to applications in optical and electronic data storage, signal modulation and beyond-classical computing.

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Elfarash et al. (2024) studied this question.

synapsesocial.com/papers/68e6ee1fb6db64358766928ehttps://doi.org/10.1080/23746149.2024.2338285
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