Byun Sang-Hyuk, Yun Joo Ho, Heo Se-Yeon, Shi Chuanqian, Lee Gil Ju, Agno Karen-Christian, Jang Kyung-In, Xiao Jianliang, Song Young Min, Jeong Jae-Woong
School of Electrical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.
School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology (GIST), Gwangju, 61005, Republic of Korea.
Adv Sci (Weinh). 2022 Aug;9(24):e2202549. doi: 10.1002/advs.202202549. Epub 2022 Jun 5.
Reconfigurability of a device that allows tuning of its shape and stiffness is utilized for personal electronics to provide an optimal mechanical interface for an intended purpose. Recent approaches in developing such transformative electronic systems (TES) involved the use of gallium liquid metal, which can change its liquid-solid phase by temperature to facilitate stiffness control of the device. However, the current design cannot withstand excessive heat during outdoor applications, leading to undesired softening of the device when the rigid mode of operation is favored. Here, a gallium-based TES integrated with a flexible and stretchable radiative cooler is presented, which offers zero-power thermal management for reliable rigid mode operation in the hot outdoors. The radiative cooler can both effectively reflect the heat transfer from the sun and emit thermal energy. It, therefore, allows a TES-in-the-air to maintain its temperature below the melting point of gallium (29.8 ℃) under hot weather with strong sun exposure, thus preventing unwanted softening of the device. Comprehensive studies on optical, thermal, and mechanical characteristics of radiative-cooler-integrated TES, along with a proof-of-concept demonstration in the hot outdoors verify the reliability of this design approach, suggesting the possibility of expanding the use of TES in various environments.
一种允许调整其形状和刚度的设备的可重构性被用于个人电子产品,以为预期目的提供最佳的机械界面。开发这种变革性电子系统(TES)的最新方法涉及使用镓液态金属,它可以通过温度改变其液-固相,以促进设备的刚度控制。然而,当前的设计在户外应用时无法承受过多热量,导致在需要刚性操作模式时设备出现不期望的软化。在此,提出了一种集成了柔性可拉伸辐射冷却器的镓基TES,它为在炎热户外可靠的刚性模式操作提供零功耗热管理。辐射冷却器既能有效反射来自太阳的热传递,又能发射热能。因此,它能使空中的TES在阳光强烈照射的炎热天气下将其温度保持在镓的熔点(29.8℃)以下,从而防止设备出现不必要的软化。对集成辐射冷却器的TES的光学、热学和力学特性进行的综合研究,以及在炎热户外的概念验证演示,验证了这种设计方法的可靠性,表明了在各种环境中扩大TES应用的可能性。