...
首页> 外文期刊>Applied Energy >Flexible thermoelectric generators for body heat harvesting - Enhanced device performance using high thermal conductivity elastomer encapsulation on liquid metal interconnects
【24h】

Flexible thermoelectric generators for body heat harvesting - Enhanced device performance using high thermal conductivity elastomer encapsulation on liquid metal interconnects

机译:用于身体热量收集的柔性热电发电机-在液态金属互连上使用高导热弹性体封装增强了设备性能

获取原文
获取原文并翻译 | 示例

摘要

This paper reports flexible thermoelectric generators (TEGs) employing eutectic gallium indium (EGaIn) liquid metal interconnects encased in a novel, high thermal conductivity (HTC) elastomer. These TEGs are part of a broader effort to harvest thermal energy from the body and convert it into electrical energy to power wearable electronics. The flexible TEGs reported in this paper employ the same thermoelectric legs' used in rigid TEGs, thus eliminating the need to develop new materials specifically for flexible TEGs that often sacrifice the so-called figure of merit' for flexibility. Flexible TEGs reported here embed rigid thermoelectric legs' in soft and flexible packaging, using stretchable EGaIn interconnects. The use of liquid metal interconnects provides ultimate stretchability and low electrical resistance between the thermoelectric legs. The liquid metal lines are encased in a new stretchable silicone elastomer doped with both graphene nano-platelets and EGaIn to increase its thermal conductivity. This high thermal conductivity elastomer not only reduces the parasitic thermal resistance of the encapsulation layer but it also serves as a heat spreader, leading to 1.7X improvement in the output power density of TEGs compared to devices fabricated with a conventional elastomer. The device performance is further improved by a thin Cu layer acting as a heat spreader providing an additional 1.3X enhancement in the output power at 1.2 m/s air velocity (typical walking speed). Worn on the wrist, our best devices achieve power levels in excess of 30 mu W/cm(2) at an air velocity of 1.2 m/s outperforming previously reported flexible TEGs.
机译:本文报道了柔性热电发电机(TEG),它们采用包裹在新型高导热率(HTC)弹性体中的共晶镓铟(EGaIn)液态金属互连件。这些TEG是从人体收集热能并将其转换为电能以为可穿戴电子设备供电的更广泛努力的一部分。本文报道的柔性TEG采用与刚性TEG相同的热电腿,因此无需开发专门用于柔性TEG的新材料,而这种新材料通常会牺牲所谓的品质因数。此处报道的柔性TEG使用可拉伸的EGaIn互连将刚性热电腿嵌入软性和柔性包装中。液态金属互连的使用在热电腿之间提供了极好的可拉伸性和低电阻。液态金属线包裹在新的可拉伸有机硅弹性体中,该弹性体掺杂有石墨烯纳米片和EGaIn,以提高其导热性。这种高导热性的弹性体不仅降低了封装层的寄生热阻,而且还充当了散热器,与使用常规弹性体制造的器件相比,TEG的输出功率密度提高了1.7倍。通过充当散热器的薄Cu层可进一步提高器件性能,在1.2 m / s的空气速度(典型的行走速度)下,输出功率可额外提高1.3倍。戴在手腕上,我们最好的设备以1.2 m / s的风速达到超过30μW / cm(2)的功率水平,胜过先前报道的柔性TEG。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号