Materials, Vol. 16, Pages 6698: Amorphous BN-Based Synaptic Device with High Performance in Neuromorphic Computing

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Materials, Vol. 16, Pages 6698: Amorphous BN-Based Synaptic Device with High Performance in Neuromorphic Computing

Materials doi: 10.3390/ma16206698

Authors: Juyeong Pyo Junwon Jang Dongyeol Ju Subaek Lee Wonbo Shim Sungjun Kim

The von Neumann architecture has faced challenges requiring high-fulfillment levels due to the performance gap between its processor and memory. Among the numerous resistive-switching random-access memories, the properties of hexagonal boron nitride (BN) have been extensively reported, but those of amorphous BN have been insufficiently explored for memory applications. Herein, we fabricated a Pt/BN/TiN device utilizing the resistive switching mechanism to achieve synaptic characteristics in a neuromorphic system. The switching mechanism is investigated based on the I–V curves. Utilizing these characteristics, we optimize the potentiation and depression to mimic the biological synapse. In artificial neural networks, high-recognition rates are achieved using linear conductance updates in a memristor device. The short-term memory characteristics are investigated in depression by controlling the conductance level and time interval.

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