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用于自供电传感与智能控制的机械发光-摩擦电双峰传感器

Mechanoluminescent-Triboelectric Bimodal Sensors for Self-Powered Sensing and Intelligent Control.

作者信息

Zhou Bo, Liu Jize, Huang Xin, Qiu Xiaoyan, Yang Xin, Shao Hong, Tang Changyu, Zhang Xinxing

机构信息

State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute, Sichuan University, Chengdu, 610065, People's Republic of China.

Chengdu Development Center of Science and Technology, China Academy of Engineering Physics, Chengdu, 610200, People's Republic of China.

出版信息

Nanomicro Lett. 2023 Mar 24;15(1):72. doi: 10.1007/s40820-023-01054-0.

Abstract

Self-powered flexible devices with skin-like multiple sensing ability have attracted great attentions due to their broad applications in the Internet of Things (IoT). Various methods have been proposed to enhance mechano-optic or electric performance of the flexible devices; however, it remains challenging to realize the display and accurate recognition of motion trajectories for intelligent control. Here, we present a fully self-powered mechanoluminescent-triboelectric bimodal sensor based on micro-nanostructured mechanoluminescent elastomer, which can patterned-display the force trajectories. The deformable liquid metals used as stretchable electrode make the stress transfer stable through overall device to achieve outstanding mechanoluminescence (with a gray value of 107 under a stimulus force as low as 0.3 N and more than 2000 cycles reproducibility). Moreover, a microstructured surface is constructed which endows the resulted composite with significantly improved triboelectric performances (voltage increases from 8 to 24 V). Based on the excellent bimodal sensing performances and durability of the obtained composite, a highly reliable intelligent control system by machine learning has been developed for controlling trolley, providing an approach for advanced visual interaction devices and smart wearable electronics in the future IoT era.

摘要

具有类似皮肤多重传感能力的自供电柔性器件因其在物联网(IoT)中的广泛应用而备受关注。人们提出了各种方法来提高柔性器件的机械光学或电学性能;然而,实现用于智能控制的运动轨迹的显示和准确识别仍然具有挑战性。在此,我们展示了一种基于微纳结构机械发光弹性体的完全自供电机械发光-摩擦电双峰传感器,它可以图案化显示力的轨迹。用作可拉伸电极的可变形液态金属使应力通过整个器件稳定传递,从而实现出色的机械发光(在低至0.3 N的刺激力下灰度值为107,且具有超过2000次循环的再现性)。此外,构建了一种微结构表面,使所得复合材料的摩擦电性能显著提高(电压从8 V增加到24 V)。基于所获得复合材料的优异双峰传感性能和耐久性,开发了一种通过机器学习实现的高度可靠的智能控制系统来控制手推车,为未来物联网时代的先进视觉交互设备和智能可穿戴电子产品提供了一种方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8063/10039194/aba71fc5204a/40820_2023_1054_Fig1_HTML.jpg

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