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一种用于湿度和水下环境的防水柔性纸质热电发电机。

A Waterproof Flexible Paper-Based Thermoelectric Generator for Humidity and Underwater Environments.

作者信息

Huang Yiduo, Wang Wenfeng, Chang Sijia, Bao Aida, Liu Yuan, Li Ruirui, Xiong Jijun

机构信息

State Key Laboratory of Dynamic Measurement Technology, North University of China, Taiyuan 030051, China.

Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, 1068 Xueyuan Avenue, Shenzhen 518055, China.

出版信息

Materials (Basel). 2024 May 14;17(10):2338. doi: 10.3390/ma17102338.

Abstract

A thermoelectric generator (TEG) is one of the important energy harvesting sources for wearable electronic devices, which converts waste heat into electrical energy without any external stimuli, such as light or mechanical motion. However, the poor flexibility of traditional TEGs (e.g., Si-based TE devices) causes the limitations in practical applications. Flexible paper substrates are becoming increasingly attractive in wearable electronic technology owing to their usability, environmental friendliness (disposable, biodegradable, and renewable materials), and foldability. The high water-absorbing quality of paper restricts its scope of application due to water failure. Therefore, we propose a high-performance flexible waterproof paper-based thermoelectric generator (WPTEG). A modification method that infiltrates TE materials into cellulose paper through vacuum filtration is used to prepare the TE modules. By connecting the TE-modified paper with Al tape, as well as a superhydrophobic layer encapsulation, the WPTEG is fabricated. The WPTEG with three P-N modules can generate an output voltage of up to 235 mV at a temperature difference of 50 K, which can provide power to portable electronic devices such as diodes, clocks, and calculators in hot water. With the waterproof property, the WPTEG paves the way for achieving multi-scenario applications in humid environments on human skin.

摘要

热电发电机(TEG)是可穿戴电子设备重要的能量收集源之一,它无需任何外部刺激(如光或机械运动)就能将废热转化为电能。然而,传统热电发电机(如硅基TE器件)的柔韧性较差,这限制了其实际应用。柔性纸质基板因其可用性、环境友好性(一次性、可生物降解和可再生材料)以及可折叠性,在可穿戴电子技术中越来越具有吸引力。纸张的高吸水性因水分问题限制了其应用范围。因此,我们提出了一种高性能的柔性防水纸质热电发电机(WPTEG)。采用通过真空过滤将TE材料渗入纤维素纸的改性方法制备TE模块。通过用铝带连接TE改性纸以及进行超疏水层封装,制造出WPTEG。具有三个P-N模块的WPTEG在50K的温差下可产生高达235mV的输出电压,能够为热水中的二极管、时钟和计算器等便携式电子设备供电。凭借其防水性能,WPTEG为在人体皮肤的潮湿环境中实现多场景应用铺平了道路。

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