Xu Shengduo, Li Meng, Dai Yuchen, Hong Min, Sun Qiang, Lyu Wanyu, Liu Ting, Wang Yuan, Zou Jin, Chen Zhi-Gang, Dargusch Matthew
School of Mechanical and Mining Engineering, The University of Queensland, Brisbane, Queensland, 4072, Australia.
School of Chemistry and Physics, Queensland University of Technology, Brisbane, Queensland, 4000, Australia.
Adv Mater. 2022 Oct;34(41):e2204508. doi: 10.1002/adma.202204508. Epub 2022 Sep 4.
In this study, flexible thermoelectric coolers (FTECs) are used to develop an alternative personalized cooling technology to achieve a large temperature drop of 10 °C and cooling capacity of 256 W m . Such an excellent cooling performance is attributed to the innovative design of the quadra-layered Ag Se/poly(3,4-ethylenedioxythiophene) polystyrene sulfonate structure in FTECs and the induced air vortices by the vortex generator attached to the hot surface of the device. The applied pulse-width modulation technique guarantees human body comfort at inconsistent ambient temperature by modulating the duty ratio of the power source, which also saves 35% of the power consumption. As a result, the as-prepared FTECs only consume 68.5 W so as to maintain a comfortable skin temperature (32 ± 0.5 °C) when the ambient temperature is at 31 °C. This technology provides a reliable and adjustable solution for personalized cooling in environments where comfortable temperatures are exceeded.
在本研究中,柔性热电冷却器(FTEC)被用于开发一种替代性的个性化冷却技术,以实现10°C的大温差和256 W/m的冷却能力。如此出色的冷却性能归因于FTEC中四层Ag₂Se/聚(3,4-乙撑二氧噻吩)聚苯乙烯磺酸盐结构的创新设计以及附着在设备热表面的涡流发生器所诱导的空气漩涡。所应用的脉宽调制技术通过调节电源的占空比,在环境温度不一致的情况下保证人体舒适度,这也节省了35%的功耗。结果,当环境温度为31°C时,所制备的FTEC仅消耗68.5 W就能维持舒适的皮肤温度(32±0.5°C)。该技术为温度超过舒适范围的环境中的个性化冷却提供了一种可靠且可调节的解决方案。