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Multi-ion controllable metal halide ionic structure for selective short- and long-term memorable synaptic devices
- Lee, Daseul;
- Lee, Seung-Jea;
- Kim, Jae Ho;
- Kim, Geonguk;
- Jung, Wan-Gil;
- ... Kim, Young-Hoon;
- 외 5명
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9초록
Development of memristors based on artificial synapses is a significant advancement in modeling biological synapses that utilize short-term plasticity (STP) and long-term plasticity (LTP). Herein, we present a novel multimode mechanism memristor based on Cs2AgI3 with 1D [AgI4]3− tetrahedral nanowire that allows for the simultaneous manipulation of temporally expanded plasticity through controllable multi-ions. The ion-transport mechanisms are controlled by the energy barriers of vacancy transportation and metal-ion injection, depending on the bias voltage. Finally, the conductance states of the multimode memristors are determined through the distinct rate-determining steps of the dominant ion migrations. To realize a multimode conductance state, the LTP is further expanded to short-lived (SL) and long-lasting (LL) plasticity by adjusting the length of the memory timescale through bias voltage. SL-LTP maintains a relatively low value (≈0.4 mS) for ∼750 ms, whereas the conductance of LL-LTP gradually decreases from ≈1.5 mS to ≈0.5 mS over 23 h. The accuracies achieved for each respective mode simulation in the perception rate of an artificial neural network based on multimode memristors are ≈91% and ≈88%. Therefore, the Cs2AgI3 memristor is capable of a new breakthrough in the development of next-generation neuromorphic computing as a multimode perceptron by simultaneously utilizing temporal plasticity.
키워드
- 제목
- Multi-ion controllable metal halide ionic structure for selective short- and long-term memorable synaptic devices
- 저자
- Lee, Daseul; Lee, Seung-Jea; Kim, Jae Ho; Kim, Geonguk; Jung, Wan-Gil; Park, Juyun; Kang, Yong-Cheol; Kim, Young-Hoon; Song, Myungkwan; Kim, Han Seul; Choi, Jin Woo
- 발행일
- 2024-04
- 유형
- Article
- 저널명
- Nano Today
- 권
- 55
- 페이지
- 1 ~ 9