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首页> 外文期刊>RSC Advances >Phase and morphology evolution of VO2 nanoparticles using a novel hydrothermal system for thermochromic applications: the growth mechanism and effect of ammonium (NH4+)
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Phase and morphology evolution of VO2 nanoparticles using a novel hydrothermal system for thermochromic applications: the growth mechanism and effect of ammonium (NH4+)

机译:使用新型水热系统进行热致变色应用的VO2纳米颗粒的相和形貌演变:铵(NH4 +)的生长机理和作用

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To reveal the formation mechanism of VO2 nanomaterials in a hydrothermal system, an experimental method was designed to study the growth and crystallization of a VO2 nanomaterial by combining the reduction of V2O5 and homogeneous precipitation method. For Route A without the addition of ammonium, VO2 (B) nanobelts were assembled by (VO2)(x)center dot yH(2)O thin nano-slices, and for Route B in the presence of ammonium, the VO2 (M) nanoparticles were decomposed from (NH4)(2)V4O9 sheets. The ammonium solution played a crucial role in the formation of the (NH4) 2V4O9 intermediate phase and finally the VO2 (M) nanoparticles. Therefore, by contrasting Routes A and B, our results revealed that the ammonium (NH4+) ion changed the reaction process and significantly influenced the preparation of well-crystallized VO2 (M) nanoparticles under hydrothermal conditions. The obtained VO2 (M) nanoparticles exhibited a high phase transition enthalpy (Delta H = 32.4 J g(-1)). The VO2-PET composite films that were derived from these VO2 (M) nanoparticles exhibited excellent optical switching characteristics (T-lum = 33.5%, Delta T-sol = 16.0%). Moreover, W-doped VO2 nanoparticles with different W doping levels were also prepared. The efficiency of W6+ dopants to lower the transition phase temperature (T-c) was determined to occur at a rate of 19.8 K per at%.
机译:为了揭示VO2纳米材料在水热体系中的形成机理,设计了一种实验方法,通过还原V2O5和均匀沉淀法研究VO2纳米材料的生长和结晶。对于不添加铵的路线A,通过(VO2)(x)中心点yH(2)O薄纳米片组装VO2(B)纳米带,对于存在铵的路线B,VO2(M)从(NH4)(2)V4O9片分解纳米颗粒。铵溶液在(NH4)2V4O9中间相以及最终的VO2(M)纳米颗粒的形成中起着至关重要的作用。因此,通过对比路线A和路线B,我们的结果表明,铵(NH4 +)离子改变了反应过程,并显着影响了在水热条件下结晶良好的VO2(M)纳米颗粒的制备。获得的VO2(M)纳米粒子表现出高的相变焓(ΔH = 32.4 J g(-1))。源自这些VO2(M)纳米粒子的VO2-PET复合膜表现出出色的光学开关特性(T-lum = 33.5%,Delta T-sol = 16.0%)。此外,还制备了具有不同W掺杂水平的W掺杂VO 2纳米颗粒。确定W6 +掺杂剂降低过渡相温度(T-c)的效率为19.8 K / at%。

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