Ohkoshi Shin-Ichi, Nakagawa Kosuke, Yoshikiyo Marie, Namai Asuka, Imoto Kenta, Nagane Yugo, Jia Fangda, Stefanczyk Olaf, Tokoro Hiroko, Wang Junhao, Sugahara Takeshi, Chiba Kouji, Motodohi Kazuhiko, Isogai Kazuo, Nishioka Koki, Momiki Takashi, Hatano Ryu
Department of Chemistry, School of Science, The University of Tokyo 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-0033, Japan.
Cryogenic Research Center, The University of Tokyo 2-11-16 Yayoi, Bunkyo-ku, Tokyo, 113-0032, Japan.
Nat Commun. 2023 Dec 27;14(1):8466. doi: 10.1038/s41467-023-44350-4.
Solid refrigerants exhibiting a caloric effect upon applying external stimuli are receiving attention as one of the next-generation refrigeration technologies. Herein, we report a new inorganic refrigerant, rubidium cyano-bridged manganese-iron-cobalt ternary metal assembly (cyano-RbMnFeCo). Cyano-RbMnFeCo shows a reversible barocaloric effect with large reversible adiabatic temperature changes of 74 K (from 57 °C to -17 °C) at 340 MPa, and 85 K (from 88 °C to 3 °C) at 560 MPa. Such large reversible adiabatic temperature changes have yet to be reported among caloric effects in solid-solid phase transition refrigerants. The reversible refrigerant capacity is 26000 J kg and the temperature window is 142 K. Additionally, cyano-RbMnFeCo shows barocaloric effects even at low pressures, e.g., reversible adiabatic temperature change is 21 K at 90 MPa. Furthermore, direct measurement of the temperature change using a thermocouple shows +44 K by applying pressure. The temperature increase and decrease upon pressure application and release are repeated over 100 cycles without any degradation of the performance. This material series also possesses a high thermal conductivity value of 20.4 W m K. The present barocaloric material may realize a high-efficiency solid refrigerant.
对外部刺激表现出热效应的固态制冷剂作为下一代制冷技术之一正受到关注。在此,我们报道了一种新型无机制冷剂,氰基桥联铷锰铁钴三元金属组装体(氰基-RbMnFeCo)。氰基-RbMnFeCo在340兆帕压力下显示出可逆的压热效应,可逆绝热温度变化高达74K(从57°C降至-17°C),在560兆帕压力下为85K(从88°C降至3°C)。在固-固相变制冷剂的热效应中,如此大的可逆绝热温度变化尚未见报道。其可逆制冷量为26000焦耳/千克,温度窗口为142K。此外,氰基-RbMnFeCo即使在低压下也表现出压热效应,例如在90兆帕压力下可逆绝热温度变化为21K。此外,使用热电偶直接测量温度变化显示,施加压力时温度升高44K。在施加和释放压力时温度的升高和降低可重复100多个循环,而性能没有任何下降。该材料系列还具有20.4瓦/(米·开尔文)的高导热率值。这种新型压热材料有望实现高效的固态制冷剂。