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一种具有阈值自适应可调性的可见光触发人工光子伤害感受器。

A visible light-triggered artificial photonic nociceptor with adaptive tunability of threshold.

作者信息

Gong Guodong, Gao Shuang, Xie Zhuolin, Ye Xiaoyu, Lu Ying, Yang Huali, Zhu Xiaojian, Li Run-Wei

机构信息

CAS Key Laboratory of Magnetic Materials and Devices, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, P. R. China.

出版信息

Nanoscale. 2021 Jan 14;13(2):1029-1037. doi: 10.1039/d0nr07297d. Epub 2021 Jan 4.

Abstract

An artificial photonic nociceptor that can accurately emulate the activation of a human visual nociceptive pathway is highly desired for the development of advanced intelligent optoelectronic information processing systems. However, the realization of such an artificial device needs sophisticated materials design and is pending to date. Herein, we demonstrate a visible light-triggered artificial nociceptor, with a simple ITO/CeO/Pt sandwich structure, that can well reproduce the pain-perceptual characteristics of the human visual system. The abundant oxygen vacancies in the CeO layer account for visible light activation, and the notable built-in electric field due to work function difference of the two electrodes enables the device to work even in a self-powered mode. Key nociceptive characteristics, including threshold, no adaptation, relaxation, and sensitization, are realized in the device and are attributed to the oxygen vacancy-associated electron trapping and detrapping processes within the CeO layer. More importantly, the threshold light intensity to activate the device can be readily manipulated using a sub-1 V external voltage, resembling the ambient luminance-dependent tunability of threshold of the human visual system. This work opens up a new avenue towards the development of next-generation intelligent and low-power perceptual systems, such as visual prostheses, artificial eyes, and humanoid robots.

摘要

对于先进智能光电信息处理系统的发展而言,非常需要一种能够精确模拟人类视觉痛觉通路激活的人工光子痛觉感受器。然而,实现这样一种人工装置需要复杂的材料设计,并且至今仍未实现。在此,我们展示了一种具有简单ITO/CeO/Pt三明治结构的可见光触发人工痛觉感受器,它能够很好地重现人类视觉系统的痛觉感知特征。CeO层中丰富的氧空位导致了可见光激活,并且由于两个电极的功函数差异而产生的显著内建电场使该装置甚至能够在自供电模式下工作。该装置实现了关键的痛觉特征,包括阈值、无适应性、弛豫和敏化,这些都归因于CeO层内与氧空位相关的电子俘获和脱俘获过程。更重要的是,使用低于1V的外部电压可以很容易地操纵激活该装置的阈值光强度,这类似于人类视觉系统阈值的环境亮度依赖性可调性。这项工作为下一代智能和低功耗感知系统的发展开辟了一条新途径,如视觉假体、人工眼睛和类人机器人。

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