TY - JOUR
T1 - Growth, structure, and magnetocaloric effect of Ce2X3(NO3)12·24H2O (X=Cu, Co) crystals
AU - Wang, Changkun
AU - Chen, Zuhua
AU - Shen, Jun
AU - Lau, Yong Chang
AU - Tu, Heng
AU - Xiong, Changmin
N1 - Publisher Copyright:
Copyright © 2026. Published by Elsevier Ltd.
PY - 2026/10
Y1 - 2026/10
N2 - Single crystals of Ce2X3(NO3)12·24H2O (X=Cu, Co, CXN) were successfully synthesized, all crystallizing in the trigonal space group R¯3. Under a magnetic field variation of 0-9 T at 2 K, Ce2Cu3(NO3)12·24H2O and Ce2Co3(NO3)12·24H2O exhibit large magnetic entropy changes of 15.18 J·kg-1·K-1 and 16.19 J·kg-1·K-1, respectively. Notably, the magnetic entropy changes of these novel crystals significantly exceed that of Ce2Mg3(NO3)12·24H2O (CMN), which is only 6.33 J·kg-1·K-1 under identical conditions. Meanwhile, the refrigerant capacity (RC), constrained-range equivalent refrigerant capacity product (RCP) and temperature-averaged entropy change (TEC) of CXN are also comprehensively superior to those of CMN. These performances suggest that CXN are promising candidates for ultra-low temperature magnetic refrigeration applications.
AB - Single crystals of Ce2X3(NO3)12·24H2O (X=Cu, Co, CXN) were successfully synthesized, all crystallizing in the trigonal space group R¯3. Under a magnetic field variation of 0-9 T at 2 K, Ce2Cu3(NO3)12·24H2O and Ce2Co3(NO3)12·24H2O exhibit large magnetic entropy changes of 15.18 J·kg-1·K-1 and 16.19 J·kg-1·K-1, respectively. Notably, the magnetic entropy changes of these novel crystals significantly exceed that of Ce2Mg3(NO3)12·24H2O (CMN), which is only 6.33 J·kg-1·K-1 under identical conditions. Meanwhile, the refrigerant capacity (RC), constrained-range equivalent refrigerant capacity product (RCP) and temperature-averaged entropy change (TEC) of CXN are also comprehensively superior to those of CMN. These performances suggest that CXN are promising candidates for ultra-low temperature magnetic refrigeration applications.
KW - Magnetic refrigeration materials
KW - Magnetocaloric effect
KW - Ultra-low temperature
UR - https://www.scopus.com/pages/publications/105046711233
U2 - 10.1016/j.cryogenics.2026.104442
DO - 10.1016/j.cryogenics.2026.104442
M3 - Article
AN - SCOPUS:105046711233
SN - 0011-2275
VL - 162
JO - Cryogenics
JF - Cryogenics
M1 - 104442
ER -