Designing Asymmetric Memristive Behavior in Proton Mixed Conductors for Neuromorphic Applications
Protonic devices that couple ionic and electronic transport are demonstrated as bioinspired neuromorphic elements. The devices exhibit rubber‐like asymmetric memristive behavior with slow voltage‐driven conductance increase and rapid relaxation, enabling simplified read–write operation.
Nada H. A. Besisa +6 more
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Departure Process of Actively Managed Queue with Dependent Job Sizes. [PDF]
Chydzinski A.
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The facet‐engineered ZnO/Zn3In2S6 heterostructure, dominated by {001} plane coupling, exposes abundant unsaturated Zn sites with elongated Zn─O bonds, directing photoexcited charge carriers along an S‐scheme pathway and suppressing recombination. Enhanced interfacial Zn adsorption toward bisphenol A and methylene blue further synergistically promotes ...
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Dataset-Learning Duality and Emergent Criticality. [PDF]
Kukleva E, Vanchurin V.
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Scattering from a finite-length closed perfect electric conducting circular cylinder: a regularized full-wave analysis. [PDF]
Schettino F, Di Murro F, Lucido M.
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Beyond Bayesian Inference: The Correlation Integral Likelihood Framework and Gradient Flow Methods for Deterministic Sampling. [PDF]
Gwiazda P +3 more
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Optical closed form soliton structures for the Kuralay-II equation in nonlinear optical complex media. [PDF]
Arshad A +5 more
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Time-domain response bounds for linear time invariant systems with application to transmission line traveling waves. [PDF]
Štumpf M, Nordebo S.
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Sub-ångström bond length tuning enhances photoluminescence quantum yield in copper nanoclusters. [PDF]
Tang L +5 more
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