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- W1980076873 abstract "We propose a route to largely decrease the transition temperature for the insulator–metal transition of VO2 by doping with beryllium atoms. Our first-principles calculations show that the doped beryllium atoms can unprecedentedly decrease the phase transition temperature by 58 K per at% Be, which exceeds any doping attempts reported for VO2. Furthermore, it is found that the transition temperature of the Be-doped VO2 can be further lowered by applying external uniaxial pressure. A combination of Be-doping and external pressure realizes the occurrence of the phase transition at the desired room temperature. The nature of these findings is revealed to be essentially relevant to the strain-induced dimerization of V–V chains in the R-phased VO2." @default.
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- W1980076873 date "2013-01-01" @default.
- W1980076873 modified "2023-09-25" @default.
- W1980076873 title "Giant reduction of the phase transition temperature for beryllium doped VO2" @default.
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- W1980076873 doi "https://doi.org/10.1039/c3cp44476g" @default.
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