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基于旋涂法制备的岛状钙钛矿薄膜的弱光激发突触混合光电晶体管。

Weak Light-Stimulated Synaptic Hybrid Phototransistors Based on Islandlike Perovskite Films Prepared by Spin Coating.

作者信息

Liu Jiahui, Yang Zunxian, Gong Zhipeng, Shen Zihong, Ye Yuliang, Yang Baoyong, Qiu Yinglin, Ye Bingqing, Xu Lei, Guo Tailiang, Xu Sheng

机构信息

National & Local United Engineering Laboratory of Flat Panel Display Technology, Fuzhou University, Fuzhou 350108, P. R. China.

Mindu Innovation Laboratory, Fujian Science & Technology Innovation Laboratory For Optoelectronic Information of China, Fuzhou 350108, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Mar 24;13(11):13362-13371. doi: 10.1021/acsami.0c22604. Epub 2021 Mar 10.

Abstract

An artificial synaptic device that can provide color discrimination, image storage, and image recognition is highly required to mimic the human vision for biological robots. All-inorganic halide perovskites have attracted extensive attention for the reason of their high stability and favorable photoelectric properties. In this study, a light-stimulated synaptic phototransistor based on a CsPbBr/organic semiconductor hybrid film is reported. The fabricated CsPbBr film exhibits an island structure, which reduces the hysteresis effectively and at the same time achieves a high specific detectivity of up to 2 × 10 Jones. The decay of the photocurrent can be delayed by changing the gate bias, which is essential for achieving high-performance light-stimulated synaptic devices. Due to the outstanding detectivity of the device, the obvious synaptic functions can be observed when triggered by a light signal with a power of 1.6 nW that is much weaker than previous most perovskite-based hybrid synaptic phototransistors under a low operating voltage of -1 V. The electrical power consumption of the device could be as low as 0.076 pJ when the power of light spike was 7.36 nW. Taking into account this characterization, with changing of light intensity or wavelength, the contrast of the image was enlarged, which can further promote the image recognition accuracy. More significantly, this CsPbBr/TIPS hybrid film can be fabricated by facile and low-cost solution processes. This study indicates the great potential of solution-processed perovskite-based light-stimulated synapses for future artificial visual systems.

摘要

为了使生物机器人模拟人类视觉,迫切需要一种能够实现颜色辨别、图像存储和图像识别的人工突触器件。全无机卤化物钙钛矿因其高稳定性和良好的光电性能而备受关注。在本研究中,报道了一种基于CsPbBr/有机半导体混合膜的光刺激突触光电晶体管。制备的CsPbBr膜呈现岛状结构,有效降低了滞后现象,同时实现了高达2×10琼斯的高比探测率。通过改变栅极偏压可以延迟光电流的衰减,这对于实现高性能光刺激突触器件至关重要。由于该器件具有出色的探测率,在-1 V的低工作电压下,由功率为1.6 nW的光信号触发时,可以观察到明显的突触功能,该光信号比以往大多数基于钙钛矿的混合突触光电晶体管的光信号弱得多。当光脉冲功率为7.36 nW时,该器件的电能消耗可低至0.076 pJ。考虑到这一特性,随着光强度或波长的变化,图像的对比度会增大,这可以进一步提高图像识别精度。更重要的是,这种CsPbBr/TIPS混合膜可以通过简便且低成本的溶液工艺制备。这项研究表明,溶液处理的钙钛矿基光刺激突触在未来人工视觉系统中具有巨大潜力。

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