A Scalable Artificial Neuron Based on Ultrathin Two-Dimensional Titanium Oxide.

Wang, Jingyun; Teng, Changjiu; Zhang, Zhiyuan; Chen, Wenjun; Tan, Junyang; Pan, Yikun; Zhang, Rongjie; Zhou, Heyuan et al. · ACS Nano · 2021

basic_science · Level V

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Abstract

A spiking neural network consists of artificial synapses and neurons and may realize human-level intelligence. Unlike the widely reported artificial synapses, the fabrication of large-scale artificial neurons with good performance is still challenging due to the lack of a suitable material system and integration method. Here, we report an ultrathin (less than10 nm) and inch-size two-dimensional (2D) oxide-based artificial neuron system produced by a controllable assembly of solution-processed 2D monolayer TiO<sub><i>x</i></sub> nanosheets. Artificial neuron devices based on such 2D TiO<sub><i>x</i></sub> films show a high on/off ratio of 10<sup>9</sup> and a volatile resistance switching phenomenon. The devices can not only emulate the leaky integrate-and-fire activity but also self-recover without additional circuits for sensing and reset. Moreover, the artificial neuron arrays are fabricated and exhibited good uniformity, indicating their large-area integration potential. Our results offer a strategy for fabricating large-scale and ultrathin 2D material-based artificial neurons and 2D spiking neural networks.

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