Zhang Chengliang, Wang Dunhui, Qian Suxin, Zhang Zhengming, Liang Xiaohui, Wu Liqian, Long Liyuan, Shi Haifeng, Han Zhida
Hangzhou Dianzi University, Hangzhou, 310018, China.
Jiangnan University, WuXi, 214122, China.
Mater Horiz. 2022 Apr 4;9(4):1293-1298. doi: 10.1039/d1mh01920a.
Solid-state cooling technology based on the caloric effects of phase-transition materials has been a research hotspot due to its environmental friendliness and high efficiency, but limited for practical applications due to its narrow working temperature region. Here, we report giant barocaloric effects based on pressure-driven liquid-solid phase transitions in elastic copolymers of ethylene and vinyl acetate. Giant adiabatic temperature changes of up to 29.6/-26.9 K are directly observed under rapid compressions/decompressions of 400 MPa near the liquid-solid phase transition points. Strikingly, since both the solid and the liquid sides can show giant barocaloric effects, a very broad refrigeration temperature region of more than 110 K is achieved in these copolymers. Furthermore, a cooling prototype is designed to demonstrate the potential applications of these liquid/elastic barocaloric materials. Our study sheds light on exploring liquid-solid phase transition materials for the next-generation refrigerators.
基于相变材料热效应的固态冷却技术因其环境友好和高效而成为研究热点,但由于其工作温度范围窄,在实际应用中受到限制。在此,我们报道了基于乙烯和醋酸乙烯酯弹性共聚物中压力驱动的液-固相变的巨大压电热效应。在液-固相变点附近400MPa的快速压缩/减压下,直接观察到高达29.6/-26.9K的巨大绝热温度变化。引人注目的是,由于固液两侧都能表现出巨大的压电热效应,这些共聚物实现了超过110K的非常宽的制冷温度范围。此外,设计了一个冷却原型来展示这些液/弹性压电热材料的潜在应用。我们的研究为探索用于下一代冰箱的液-固相变材料提供了启示。