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◆ Nano Letters2026-03-03· Neuromorphic engineering

Iodide-Coated CsPbBr <sub>3</sub> Perovskite Nanowires for Resistive-Switching Memory in Neuromorphic Systems and Edge Computing

Jae Kook Uhm, Yongjin Byun, Seungman Park, S Kim, Min‐Jae Choi

原始摘要(英文原文)· Original abstract
The rapid growth of data-driven technologies highlights the inefficiency of von Neumann architecture for large-scale parallel processing. Neuromorphic computing offers a promising alternative using synaptic memory elements capable of analog modulation. Here, we report a surface-engineered CsPbBr 3 perovskite nanowire (PNW) platform for high-performance memristors. By removing insulating ligands and introducing surface-selective iodide passivation, we suppress bromide-related defects and promote stable filament formation. The devices exhibit reliable bipolar switching, multilevel conductance, and robust potentiation/depression. These memristors further demonstrate brain-inspired functions including time-dependent plasticity, Pavlovian learning, and 91.6% recognition accuracy on the EMNIST data set. Additionally, the devices enable low-latency 4-bit edge computing, validating their potential for energy-efficient intelligent hardware. This work establishes colloidal CsPbBr 3 PNWs as a scalable platform for next-generation neuromorphic applications.
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Iodide-Coated CsPbBr <sub>3</sub> Perovskite Nanowires for Resistive-Switching Memory in Neuromorphic Systems and Edge Computing — 科研速览 Science Skim