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用于虚拟味觉感知的基于锑化钠合金的低频机械能收集器。

NaSb Alloy-Based Low-Frequency Mechanical Energy Harvesters for Virtual Taste Sensations.

作者信息

Lei Xinyu, Du Hao, Lu Pengxian, Zhang Hanlu, Zhang Meng

机构信息

School of Materials Science and Engineering, Henan University of Technology, Zhengzhou, Henan 450001, China.

Henan International Joint Laboratory of Nano-Photoelectric Magnetic Materials, Zhengzhou, Henan 450001, China.

出版信息

ACS Appl Mater Interfaces. 2024 Feb 7;16(5):6048-6056. doi: 10.1021/acsami.3c14118. Epub 2024 Jan 29.

Abstract

Batteries can be activated by external mechanical force and generate current, enabling a smart class of electrochemical-mechanical strain energy harvesters therefrom. Here, we have developed a NaSb alloy-based harvester that is able to electrochemically convert low-frequency bending or pressing mechanical energy into electrical energy. The device is designed as a flexible symmetric cell incorporating two sodiated antimony nanoflake electrodes, whose peak power and energy output are more than twice those of other sodium-alloyed electrochemical-mechanical strain energy harvesters reported. We demonstrate that the open-circuit voltage of the device is an asymptotic function of the curvature radius in the bending mode and a linear function of pressure in the pressing mode. Taking advantage of the tunability of voltage, we present a new technology that simulates various tastes by releasing low-voltage electrical signals from the harvester. This technology can not only help people with impaired taste but also be integrated into a virtual reality system to create immersive taste experiences.

摘要

电池可通过外部机械力激活并产生电流,由此催生了一类智能的电化学 - 机械应变能量收集器。在此,我们开发了一种基于锑化钠合金的能量收集器,它能够将低频弯曲或挤压机械能电化学转化为电能。该装置设计为一种柔性对称电池,包含两个钠化锑纳米片电极,其峰值功率和能量输出是已报道的其他钠合金电化学 - 机械应变能量收集器的两倍以上。我们证明,该装置的开路电压在弯曲模式下是曲率半径的渐近函数,在挤压模式下是压力的线性函数。利用电压的可调性,我们提出了一种新技术,通过从能量收集器释放低压电信号来模拟各种味道。这项技术不仅可以帮助味觉受损的人,还可以集成到虚拟现实系统中,创造身临其境的味觉体验。

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