期刊
CERAMICS INTERNATIONAL
卷 44, 期 3, 页码 2809-2813出版社
ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2017.11.024
关键词
Vanadium dioxide; Metal-insulator transition; V-V dimers; Ionic size effect; Electron localization
资金
- National Natural Science Foundation of China [11474111, 51461135004]
Nb doping effects on crystalline structure, transport transition and magnetic properties are investigated for(x)Nb(x)O(2) (0 >= x <= 5%) bulks. At room temperature, doping does not change structure of monoclinic phase but causes an increase in lattice parameters for the range of x <= 3%, further doping leads to a structure transition to rutile tetragonal phase. Each sample simultaneously displays a transition to insulating behavior and a sharp decrease in susceptibility below an almost same critical temperature (T,). The T, is shown to shift from 340 K at x = 0 to similar to 277 K at x = 5% at a rate of similar to-13 K/at%. It is argued that the observed sharp decrease in susceptibility originates from the formation of V-V dimers with spins in anti-parallel, while the insulating behavior below T, is due to the electron movement from one dimerized state to another with the help of Variable Range-Hopping mechanism. Furthermore, it is proposed that doping by larger cations, which would suppress the formation of dimers, can be used to manipulate the metal-insulator transition to lower temperatures.
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