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Extreme barocaloric effect at dissolution

delete2026-01-21
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PRE
AI
K
Kun Zhang
Y
Yifang Liu
Y
Ying Gao
Z
Zhe Zhang
H
Haoyu Wang
W
Wanwu Li
X
Xiaoyan Fan
J
Jiayu Ding
Z
Ziqi Guan
S
Shogo Kawaguchi
J
Jiaqing Zhang
L
Lei Su
Y
Yiming Li
R
Runjian Jiang
Y
Yifan Li
Y
Yanxu Wang
J
Jianchao Lin
朱金龙 封面图
朱金龙 (Jinlong Zhu)
P
Peng Tong *
S
Suxin Qian *
K
Kuo Li *
张
张志东 (Zhidong Zhang)
B
Bing Li *
DOI:10.1038/s41586-025-10013-1delete
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摘要

摘要

En 中文
Refrigeration is indispensable to modern society1, yet the dominant vapour-compression systems rely on environmentally harmful fluorocarbon refrigerants with high global warming potential2–4. Solid-state caloric refrigeration offers a low-carbon alternative5–7, but its practical deployment has been hindered by limited cooling capacity and the inefficient indirect heat transfer that requires secondary fluids. Here we report an extreme barocaloric effect in NH4SCN aqueous solutions enabled by pressure-tuned dissolution and precipitation. This mechanism delivers an exceptionally large cooling capacity and markedly enhanced cooling efficiency. We obtain an in situ temperature drop of 26.8 K in the solution at room temperature, surpassing all known caloric materials. A Carnot-like cycle is designed to deliver 67 J g−1 cooling capacity per cycle with a second-law efficiency of 77%, benefiting from the extremely large temperature drops and direct heat transfer due to the self-circulating aqueous solution. Beyond the phase-transition scenario, this dissolution-based approach that combines the merits of current leading technologies emerges as a promising sustainable refrigeration solution. An extreme barocaloric effect in NH4SCN aqueous solutions is enabled by pressure-induced dissolution and precipitation, but without using a separate heat-transfer liquid.
Keyword:
barocaloric effect
ammonium thiocyanate
aqueous solution
cooling capacity
sustainable refrigeration

期刊

Nature 封面图
Nature
IF:
48.5
论文数:
1.8W
被引数:
96.5W

机构

G
Guangdong-Hong Kong-Macao Greater Bay Area
学者数:
21
论文数: 20
被引数: 0
J
japan synchrotron radiation research institute
学者数:
85
论文数: 50
被引数: 0
X
xi'an jiaotong university
学者数:
9.3W
论文数: 6.7W
被引数: 75
C
Chinese Academy of Sciences
学者数:
3.9W
论文数: 1.5W
被引数: 58.4W
S
southern university of science and technology
学者数:
4.7K
论文数: 1.7K
被引数: 0
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