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초록
An ion-based synaptic transistor (synaptor) is designed to emulate a biological synapse using controlled ion movements. However, developing a solid-state electrolyte that can facilitate ion movement while achieving large-scale integration remains challenging. Here, a bio-inspired organic synaptor (BioSyn) with an in situ ion-doped polyelectrolyte (i-IDOPE) is demonstrated. At the molecular scale, a polyelectrolyte containing the tert-amine cation, inspired by the neurotransmitter acetylcholine is synthesized using initiated chemical vapor deposition (iCVD) with in situ doping, a one-step vapor-phase deposition used to fabricate solid-state electrolytes. This method results in an ultrathin, but highly uniform and conformal solid-state electrolyte layer compatible with large-scale integration, a form that is not previously attainable. At a synapse scale, synapse functionality is replicated, including short-term and long-term synaptic plasticity (STSP and LTSP), along with a transformation from STSP to LTSP regulated by pre-synaptic voltage spikes. On a system scale, a reflex in a peripheral nervous system is mimicked by mounting the BioSyns on various substrates such as rigid glass, flexible polyethylene naphthalate, and stretchable poly(styrene-ethylene-butylene-styrene) for a decentralized processing unit. Finally, a classification accuracy of 90.6% is achieved through semi-empirical simulations of MNIST pattern recognition, incorporating the measured LTSP characteristics from the BioSyns. A high-performance solid-state electrolyte containing mobile tert-amine cations is designed and synthesized. The electrolyte to modulate synaptic weights is deposited and doped simultaneously with iCVD, using an in situ process that permits large-scale integration. Bio-inspired organic synaptic transistors are fabricated on rigid, flexible, and stretchable substrates. Short- and long-term synaptic plasticity and their transformability are verified. image
키워드
- 제목
- Bio-Inspired Organic Synaptor with In Situ Ion-Doped Ultrathin Polyelectrolyte Containing Acetylcholine-Like Cation
- 저자
- Yu, Ji-Man; Kim, Youson; Lee, Changhyeon; Jeong, Booseok; Kim, Jin-Ki; Han, Joon-Kyu; Yang, Junyeong; Yun, Seong-Yun; Im, Sung Gap; Choi, Yang-Kyu
- 발행일
- 2024-07
- 유형
- Article
- 저널명
- Small
- 권
- 20
- 호
- 30