Jeong Ahrong, Yoshimura Mitsuki, Kong Hyeonjun, Bian Zhiping, Tam Jason, Feng Bin, Ikuhara Yuichi, Endo Takashi, Matsuo Yasutaka, Ohta Hiromichi
Research Institute for Electronic Science, Hokkaido University, N20W10, Kita, Sapporo 001-0020, Japan.
Graduate School of Information Science and Technology, Hokkaido University, N14W9, Kita, Sapporo 060-0814, Japan.
Sci Adv. 2025 Jan 3;11(1):eads6137. doi: 10.1126/sciadv.ads6137. Epub 2025 Jan 1.
Thermal switches, which electrically turn heat flow on and off, have attracted attention as thermal management devices. Electrochemical reduction/oxidation switches the thermal conductivity (κ) of active metal oxide films. The performance of the previously proposed electrochemical thermal switches is low; the on/off κ-ratio is mostly less than 5, and the κ-switching width is less than 5 watts per meter kelvin. We used a CeO thin film as the active layer deposited on a solid electrolyte YSZ substrate. When the CeO thin film was reduced once (off-state) and then oxidized (on-state), κ was about 2.2 watts per meter kelvin in the most reduced state, and κ increased with oxidation to 12.5 watts per meter kelvin (on-state). This reduction (off-state)/oxidation (on-state) cycle was repeated 100 times, and the on/off κ-ratio was 5.8, and the κ-switching width was 10.3 watts per meter kelvin. The CeO-based solid-state electrochemical thermal switches would be potential devices for thermal shutters and thermal displays.
能通过电来控制热流通断的热开关,作为热管理设备已受到关注。电化学还原/氧化可改变活性金属氧化物薄膜的热导率(κ)。先前提出的电化学热开关性能较低;其开/关κ比率大多小于5,且κ切换宽度小于每米开尔文5瓦。我们使用CeO薄膜作为沉积在固体电解质YSZ衬底上的活性层。当CeO薄膜被还原一次(关态)然后再被氧化(开态)时,在最还原状态下κ约为每米开尔文2.2瓦,随着氧化κ增加到每米开尔文12.5瓦(开态)。这种还原(关态)/氧化(开态)循环重复了100次,开/关κ比率为5.8,κ切换宽度为每米开尔文10.3瓦。基于CeO的固态电化学热开关有望成为热快门和热显示器的潜在设备。