Phase transition-enabled MnFe2O4 nanoparticles modulated by high-pressure with enhanced electrical transport properties

被引:10
|
作者
Gong, Lei [1 ,2 ]
Chen, Guangbo [1 ]
Lv, Juncheng [1 ]
Lu, Ming [1 ]
Zhang, Junkai [1 ,2 ]
Wu, Xiaoxin [1 ,2 ]
Wang, Jingshu [1 ]
机构
[1] Jilin Normal Univ, Key Lab Funct Mat Phys & Chem, Minist Educ, Siping 136000, Peoples R China
[2] Earthquake Adm, Inst Earthquake Forecasting, United Lab High Pressure Phys & Earthquake Sci, Beijing 100036, Peoples R China
基金
中国国家自然科学基金;
关键词
High-pressure; Phase transition; Electrical transportation; MnFe2O4; SPINEL; CO; MN; NANOSPHERES; ANODE; NI;
D O I
10.1016/j.apsusc.2021.150532
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Pressure tuned structure-function relationship of MnFe2O4 nanoparticles is established for the first time by the mean of XRD, Raman and impedance spectra measurements. The application of external pressure results in a continuous lattice contraction of MnFe2O4. In the pressure range of 17.1-26.3 GPa, MnFe2O4 undergoes a cubicto-orthorhombic structural phase transition. Meanwhile, increasing pressure from ambient state to 37.1 GPa leads to the continued improvement of conductivity of the sample. Further analysis shows that the hybridized enhancement between Fe-3d and O-2p orbits and the decrease in band gap upon compression are the major factors to affect the conductivity of MnFe2O4. With the release of pressure, the sample recovers to the cubic spinel structure, but the grain boundary resistance and dielectric constant are still decreased by nearly 3 orders of magnitude compared with the counterpart before compression. By analysis of Hall-effect and electron microscope on the recovered sample, the increased interfaces density and accordingly the enlarged carrier concentration account for the obvious improvement of electrical properties in MnFe2O4 nanoparticles. In this work, such a high enhancement in conductivity due to the annealing of pressure-cycle provides a newly feasible pathway to design ferrite materials with excellent electrical and electrochemical properties, and expands their application prospects in electronic devices and microwave industries, etc.
引用
收藏
页数:7
相关论文
共 50 条
  • [31] Equation of state of the high-pressure Fe3O4 phase and a new structural transition at 70 GPa
    Ricolleau, Angele
    Fei, Yingwei
    AMERICAN MINERALOGIST, 2016, 101 (3-4) : 719 - 725
  • [32] High-pressure behavior and P-induced phase transition of CaB3O4(OH)3•H2O (colemanite)
    Lotti, Paolo
    Gatta, Giacomo Diego
    Comboni, Davide
    Guastella, Giorgio
    Merlini, Marco
    Guastoni, Alessandro
    Liermann, Hanns-Peter
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2017, 100 (05) : 2209 - 2220
  • [33] On the anomalous high-pressure phase transition of inderite, MgB3O3(OH)5.5H2O
    Comboni, Davide
    Poreba, Tomasz
    Battiston, Tommaso
    Hanfland, Michael
    Gatta, G. Diego
    SOLID STATE SCIENCES, 2023, 140
  • [34] High-pressure induced phase transition of FeS2: Electronic, mechanical and thermoelectric properties
    Harran, Ismail
    Chen, Yuanzheng
    Wang, Hongyan
    Li, Hengtao
    Li, Yucai
    Tao, Li
    JOURNAL OF ALLOYS AND COMPOUNDS, 2017, 710 : 267 - 273
  • [35] High-pressure phase transition, elastic properties and lattice vibration modes in Rb2S compound material
    Saib, S.
    Bouarissa, N.
    COMPUTATIONAL CONDENSED MATTER, 2020, 25
  • [36] High-pressure structural configuration and phase transition in celsian, BaAl2Si2O8
    Nadia Curetti
    Piera Benna
    Emiliano Bruno
    Physics and Chemistry of Minerals, 2017, 44 : 181 - 192
  • [37] High-pressure equation of state and phase transition in PbAl2Si2O8 feldspar
    Curetti, Nadia
    Benna, Piera
    Bruno, Emiliano
    AMERICAN MINERALOGIST, 2015, 100 (07) : 1568 - 1577
  • [38] High-pressure structural configuration and phase transition in celsian, BaAl2Si2O8
    Curetti, Nadia
    Benna, Piera
    Bruno, Emiliano
    PHYSICS AND CHEMISTRY OF MINERALS, 2017, 44 (03) : 181 - 192
  • [39] Discovery of New-Structured Post-Spinel MgFe2O4: Crystal Structure and High-Pressure Phase Relations
    Ishii, Takayuki
    Miyajima, Nobuyoshi
    Sinmyo, Ryosuke
    Kojitani, Hiroshi
    Mori, Daisuke
    Inaguma, Yoshiyuki
    Akaogi, Masaki
    GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (06)
  • [40] Spectroscopic properties and martensitic phase transition of Y4Al2O9:Ce single crystals under high pressure
    Wang, Yongjie
    Hrubiak, R.
    Turczynski, S.
    Pawlak, D. A.
    Malinowski, M.
    Wlodarczyk, D.
    Kosyl, K. M.
    Paszkowicz, W.
    Przybylinska, H.
    Wittlin, A.
    Kaminska, A.
    Zhydachevskyy, Ya
    Brik, M. G.
    Li, Li
    Ma, Chong-Geng
    Suchocki, A.
    ACTA MATERIALIA, 2019, 165 : 346 - 361