Carbon Nanotube Optoelectronic Synapse Transistor Arrays with Ultra‐Low Power Consumption for Stretchable Neuromorphic Vision Systems

Author:

Xie Tanghao123,Wang Qinan4,Li Min23,Fang Yuxiao23,Li Gang1,Shao Shuangshuang23,Yu Wenbo4,Wang Suyun23,Gu Weibing23,Zhao Chun4,Tang Minghua1,Zhao Jianwen23ORCID

Affiliation:

1. School of Materials Science and Engineering Xiangtan University Xiangtan Hunan Province 411105 P. R. China

2. Printable Electronics Research Center Division of Nanodevices and Related Nanomaterials Suzhou Institute of Nano‐Tech and Nano‐Bionics Chinese Academy of Sciences No. 398 Ruoshui Road, SEID, Suzhou Industrial Park Suzhou Jiangsu Province 215123 P. R. China

3. School of Nano Technology and Nano Bionics University of Science and Technology of China Hefei Anhui Province 230026 P. R. China

4. Department of Electrical and Electronic Engineering Xi'an Jiaotong‐Liverpool University Suzhou Jiangsu Province 215123 P. R. China

Abstract

AbstractHigh‐performance stretchable optoelectronic synaptic transistor arrays are key units for constructing and mimicking simulated neuromorphic vision systems. In this study, ultra‐low power consumption and low‐operation‐voltage stretchable all‐carbon optoelectronic synaptic thin film transistors (TFTs) using sorted semiconducting single‐walled carbon nanotubes (sc‐SWCNTs) modified with CdSe/ZnS quantum dots as active layers on ionic liquid‐based composite elastomer substrates are first reported. The resulting stretchable TFT devices show enhancement‐mode characteristics with excellent electrical properties (such as the record on/off ratios up to 105, negligible hysteresis, and small subthreshold swing), excellent mechanical tensile properties (such as the only 12.4% and 6.4% degradations of the carrier mobility after 20% vertical and horizontal strain stretching), and optoelectronic synaptic plasticity (for the recognition of Morse codes) with ultra‐low power consumptions (15.38 aJ) at the operating voltage from −1 to 0.2 V. At the same time, the designed nonvolatile conductance of the stretchable SWCNT optoelectronic synapse thin film transistors (SSOSTFTs) stimulated by UV light and the bending angle are first used to simulate stretchable neuromorphic vision systems (including the functions of the crystalline lens and optic cone cells as bionic eyes) for detecting the atmospheric environment with a record accuracy of 95.1% as a bionic eye.

Funder

National Natural Science Foundation of China

National Basic Research Program of China

Chinese Academy of Sciences

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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