Physical properties of the solid solution NiFe2-xMnxO4 prepared by sol gel
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作者:
Gharib Rekhila
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机构:Laboratory of Storage and Valorization of Renewable Energies,
Gharib Rekhila
Kamel Cherifi
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机构:Laboratory of Storage and Valorization of Renewable Energies,
Kamel Cherifi
Yassine Bessekhouad
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机构:Laboratory of Storage and Valorization of Renewable Energies,
Yassine Bessekhouad
Mohamed Trari
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机构:Laboratory of Storage and Valorization of Renewable Energies,
Mohamed Trari
机构:
[1] Laboratory of Storage and Valorization of Renewable Energies,
[2] National Veterinary High School,undefined
来源:
Journal of Sol-Gel Science and Technology
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2021年
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97卷
关键词:
Spinel NiFe;
Mn;
O;
Sol gel;
Optical;
Magnetism;
Transport properties;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
The solid solution NiFe2-xMnxO4 (0 ≤ x ≤ 2) is synthesized by sol gel method and the physical properties are investigated for the first time. The thermal analysis shows that the phases are formed above 400 °C. The oxides crystallize in an inverse cubic spinel whose lattice constant (a: 0.83381–0.83985 nm) increases only slightly up to x = 1.6, according to the Vegard’s law; such result is supported by the FTIR spectra. The UV-Visible spectroscopy shows both direct (1.00–1.56 eV) and indirect optical transitions (0.39–1.65 eV) due to the crystal field splitting of 3d metal. Field-dependent magnetization of the solid solution was measured at 300 K in the region (±20 kOe) and the end member NiFe2O4 exhibits a high magnetism with a saturation magnetization (20 emu/g), comparable to that reported previously. The saturation magnetization varies between 0.5 and 20 emu/g while the coactivity fluctuates between 110 and 239 Oe. The thermal variation of the electrical conductivity indicates a conduction mechanism by low polaron hopping which follows an exponential law with variable activation energies (Ea: 0.12–033 eV). The thermo-power is positive and nearly constant (S300K: 144–130 µVK−1), indicating p type conduction with a mobility more a less constant (1.5–8 × 10−6 V2 cm−1 s−1). The hole densities (NA × 1016: 0.26–2.17) are determined electrochemically from the capacitances measurements in neutral medium (Na2SO4 0.5 M). The flat band potential (Efb: −0.04 to −0.29 V) does not change significantly indicating that the valence band derives mostly from 3d orbital.
机构:
USTHB, Lab Storage & Valorizat Renewable Energies, Fac Chem, BP 32, Algiers 16111, AlgeriaUSTHB, Lab Storage & Valorizat Renewable Energies, Fac Chem, BP 32, Algiers 16111, Algeria
Attia, S.
Helaili, N.
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机构:
USTHB, Lab Storage & Valorizat Renewable Energies, Fac Chem, BP 32, Algiers 16111, AlgeriaUSTHB, Lab Storage & Valorizat Renewable Energies, Fac Chem, BP 32, Algiers 16111, Algeria
Helaili, N.
Bessekhouad, Y.
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机构:
USTHB, Lab Storage & Valorizat Renewable Energies, Fac Chem, BP 32, Algiers 16111, Algeria
Natl Vet High Sch, BP 161 El Harrach, Algiers, AlgeriaUSTHB, Lab Storage & Valorizat Renewable Energies, Fac Chem, BP 32, Algiers 16111, Algeria
Bessekhouad, Y.
Trari, M.
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机构:
USTHB, Lab Storage & Valorizat Renewable Energies, Fac Chem, BP 32, Algiers 16111, AlgeriaUSTHB, Lab Storage & Valorizat Renewable Energies, Fac Chem, BP 32, Algiers 16111, Algeria
机构:
Shanghai Univ Sci & Technol, Sch Energy & Power Engn, Shanghai 200093, Peoples R ChinaShanghai Univ Sci & Technol, Sch Energy & Power Engn, Shanghai 200093, Peoples R China
Men, Chuanling
Li, Hongqin
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Shanghai Univ Sci & Technol, Sch Energy & Power Engn, Shanghai 200093, Peoples R ChinaShanghai Univ Sci & Technol, Sch Energy & Power Engn, Shanghai 200093, Peoples R China
Li, Hongqin
Zhang, Hua
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机构:
Shanghai Univ Sci & Technol, Sch Energy & Power Engn, Shanghai 200093, Peoples R ChinaShanghai Univ Sci & Technol, Sch Energy & Power Engn, Shanghai 200093, Peoples R China