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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Microemulsion-based synthesis of V_(1-x)W_xO2@SiO2 core-shell structures for smart window applications
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Microemulsion-based synthesis of V_(1-x)W_xO2@SiO2 core-shell structures for smart window applications

机译:基于微乳液的V_(1-x)W_xO2 @ SiO2核壳结构在智能窗户应用中的合成

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摘要

Microemulsion technology was introduced to prepare V_(1-x)W_xO2@SiO2 core-shell nanostructures with various morphologies (nanorod, nanosphere, and their combination) by controlling the pH of the microemulsion. Flexible foils coated with the core-shell nanoparticles exhibited high optical performance with solar regulation efficiencies up to 12.55, 14.17, and 12.90% and fairly high visible transmittance of 53.20, 45.26 and 39.41 for 0 at%, 1 at%, and 2 at% of W-doped VO2 particles, respectively. The results suggested that the current foil was very suitable for application in smart windows. Interestingly, W doping did not deteriorate the solar regulation ability, which has not been reported before. The SiO2 shell played multifunctional roles because it can not only depress the aggregation and secondary growth of the nanoparticles during the process of annealing but also obviously enhance the thermal stability of V_(1-x)W_xO2. The amazing results provide significant progress in VO2-based thermochromic coating with a Mott phase transition temperature near room temperature and pave the way for practical application to smart windows.
机译:引入微乳液技术,通过控制微乳液的pH值,制备具有不同形态(纳米球,纳米球及其组合)的V_(1-x)W_xO2 @ SiO2核壳纳米结构。涂有核壳纳米粒子的柔性箔表现出高光学性能,日照调节效率高达12.55%,14.17和12.90%,0 at%,1 at%和2 at%的可见光透射率分别为53.20、45.26和39.41。 W掺杂的VO2颗粒。结果表明,目前的箔非常适合用于智能窗户。有趣的是,W掺杂并没有降低太阳调节能力,这在以前没有报道。 SiO2壳起着多功能的作用,因为它不仅可以抑制纳米粒子在退火过程中的聚集和二次生长,而且还可以明显提高V_(1-x)W_xO2的热稳定性。令人惊奇的结果为基于VO2的热致变色涂层提供了重大进展,其具有接近室温的Mott相变温度,并为智能窗户的实际应用铺平了道路。

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