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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Acceleration of tungsten doping on vanadium dioxide (VO2) by alkali species
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Acceleration of tungsten doping on vanadium dioxide (VO2) by alkali species

机译:碱物种在二氧化钒(VO2)上加速钨掺杂

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The monoclinic vanadium dioxide, VO2(M), undergoes reversible phase transition from monoclinic (semi-conductor) to tetragonal (metal), which exhibits a good thermochromic property. VOSO4, as a vanadium source, is easy to handle produces VO2(M) under mild condition in the presence of alkali species. In this study, the effects of the additions of NH4HCO3, NH3 center dot H2O, and NaOH on the VO2 crystal formation with/without tungsten doping for thermochromicity were investigated. NaOH, the strongest base of the three, provided the strongest and narrowest x-ray diffraction peak, while NH4HCO3, the weakest base, provided the opposite. Interestingly, for the tungsten doping to adjust the transition temperature, the use of NH4HCO3 was more suitable due to the possibility of a slow crystal frame formation as compared to the use of NaOH.
机译:二氧化钒,VO2(M),经历从单斜(半导体)到四方(金属)的可逆相转变,其表现出良好的热致变色性。 作为钒源的voso4易于处理在低于碱物种的温和条件下产生VO2(m)。 在该研究中,研究了NH4HCO3,NH3中央点H2O和NaOH在VO2晶体形成上的效果,其中包含/不掺杂热致浓度。 NaOH,三个最强的底座,提供了最强和最窄的X射线衍射峰,而NH4HCO3,最弱的底座,提供相反的底座。 有趣的是,对于调节过渡温度的钨掺杂,由于与使用NaOH的使用慢晶体框架形成的可能性,使用NH 4 HCO 3更适合。

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