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Hexagonal pillar structure of heteroepitaxial titania-vanadia nanocrystal films for high performance in thermochromic and photocatalytic properties

机译:异质外延二氧化钛-钒纳米晶体薄膜的六角柱结构,具有出色的热致变色和光催化性能

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In this study, we employed the mixture of titanium and vanadium sols with various ratios in WO3 and poly(vinylpyrrolidone) solution to generate the precursors of W-doped titania-vanadia composites. The heteroepitaxial W-doped titania-vanadia crystals (HWTVCs) with various structures were obtained after a calcination process at 700 degrees C for 3 h. The structure transformation of HWTVCs was highly relative to the ratio of titanium to vanadium sols. A hexagonal pillar structure was found at a ratio of 0.25 for titanium to vanadium sols. The scales of the hexagonal pillars could be apparently divided into two groups. The scale of one group ranged from 80 to 130 nm while the scale of the other ranged from 300 to 950 nm. The heteroepitaxial crystals with hexagonal pillar structure enhanced the visible transmittance, near-infrared switching efficiency and the ability to photocatalytically degrade the organic component under visible light irradiation. Such bifunctional (photocatalytic and thermochromic) nanomaterials might have applications in energy-saving smart windows.
机译:在这项研究中,我们使用了WO3中的各种比例的钛和钒溶胶与聚乙烯吡咯烷酮溶液的混合物来生成W掺杂的二氧化钛-钒复合材料的前体。在700℃下煅烧3 h后,得到具有不同结构的异质外延钨掺杂的二氧化钛-钒晶体(HWTVCs)。 HWTVC的结构转变与钛与钒溶胶的比例高度相关。发现钛与钒溶胶的比率为0.25的六方柱状结构。六角柱的比例尺显然可以分为两组。一组的规模在80至130nm的范围内,而另一组的规模在300至950nm的范围内。具有六方柱状结构的异质外延晶体提高了可见光透射率,近红外转换效率以及在可见光照射下光催化降解有机组分的能力。这种双功能(光催化和热致变色)纳米材料可能在节能智能窗户中具有应用。

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