Enhanced magnetocaloric properties of La0.8K0.2-xPbxMnO3 nanoparticles by optimizing Pb doping concentrations

被引:7
|
作者
Bouzid, Sara Ait [1 ]
Essoumhi, Abdellatif [1 ]
Rostas, Arpad Mihai [2 ]
Kuncser, Andrei Cristian [2 ]
Negrila, Constantin Catalin [2 ]
Iacob, Nicusor [2 ]
Galatanu, Andrei [2 ]
Popescu, Bogdan [2 ]
Sajieddine, Mohammed [3 ,4 ]
Galca, Aurelian Catalin [2 ]
Kuncser, Victor [2 ]
机构
[1] Sultan Moulay Slimane Univ, Polydisciplinary Fac, Lab Chem Proc & Appl Mat, BP 592, Beni Mellal 23000, Morocco
[2] Natl Inst Mat Phys, Atomistilor 405A, Magurele 077125, Ilfov, Romania
[3] Sultan Moulay Slimane Univ, Fac Sci & Technol, Lab Phys Mat, BP 592, Beni Mellal 23000, Morocco
[4] Sultan Moulay Slimane Univ, Natl Sch Appl Sci, Khouribga, Morocco
关键词
Magnetocaloric effect; Magnetic entropy change; EPR; Perovskite; MAGNETIC ENTROPY CHANGE; ROOM-TEMPERATURE; PHYSICAL-PROPERTIES; CRITICAL-BEHAVIOR; COMBUSTION; PEROVSKITES; STRONTIUM; 1ST-ORDER; CHARGE; X=0.1;
D O I
10.1016/j.ceramint.2022.02.239
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Polycrystalline La(0.8)K(0.2-x)Pb(x)MnO3 (x = 0.05, 0.10, 0.15, 0.20) ceramics were successfully prepared by flash combustion route and their structural, morphological, magnetic and magnetocaloric properties were investi-gated. Structural analyses using X-ray diffraction reveal that all samples are crystallized in the rhombohedral structure and belong to R <(3) over bar > c space group. The increase of Pb doping does not modify the crystalline structure but changes the grain size and lattice parameters. X-ray photoelectron spectroscopy (XPS) fitting results of Mn 2p peaks confirmed the coexistence of Mn3+ and Mn4+ ions which contribute to the double exchange interactions improving the ferromagnetic order in the samples. The magnetization's temperature and magnetic field de-pendences indicate a second-order ferromagnetic-paramagnetic transition of the ceramics. A significant mag-netic entropy change near room temperature was observed for La0.8K0.1Pb0.1MnO3, showing considerable magnetocaloric properties. Furthermore, electron paramagnetic resonance spectroscopy (EPR) was also used to examine the ferromagnetic-paramagnetic transition.
引用
收藏
页码:16845 / 16860
页数:16
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