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One-dimensional organic artificial multi-synapses enabling electronic textile neural network for wearable neuromorphic applications
- Ham, Seonggil;
- Kang, Minji;
- Jang, Seonghoon;
- Jang, Jingon;
- Choi, Sanghyeon;
- ... Wang, Gunuk;
- 외 1명
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172SCOPUS
133초록
One-dimensional (1D) devices are becoming the most desirable format for wearable electronic technology because they can be easily woven into electronic (e-) textile(s) with versatile functional units while maintaining their inherent features under mechanical stress. In this study, we designed 1D fiber-shaped multi-synapses comprising ferroelectric organic transistors fabricated on a 100-mu m Ag wire and used them as multisynaptic channels in an e-textile neural network for wearable neuromorphic applications. The device mimics diverse synaptic functions with excellent reliability even under 6000 repeated input stimuli and mechanical bending stress. Various NOR-type textile arrays are formed simply by cross-pointing 1D synapses with Ag wires, where each output from individual synapse can be integrated and propagated without undesired leakage. Notably, the 1D multi-synapses achieved up to similar to 90 and similar to 70% recognition accuracy for MNIST and electrocardiogram patterns, respectively, even in a single-layer neural network, and almost maintained regardless of the bending conditions.
키워드
- 제목
- One-dimensional organic artificial multi-synapses enabling electronic textile neural network for wearable neuromorphic applications
- 저자
- Ham, Seonggil; Kang, Minji; Jang, Seonghoon; Jang, Jingon; Choi, Sanghyeon; Kim, Tae-Wook; Wang, Gunuk
- 발행일
- 2020-07
- 유형
- Article
- 저널명
- Science Advances
- 권
- 6
- 호
- 28