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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >The influence of oxygen on the microstructural, optical and photochromic properties of polymer-matrix, tungsten-oxide nanocomposite films
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The influence of oxygen on the microstructural, optical and photochromic properties of polymer-matrix, tungsten-oxide nanocomposite films

机译:氧对聚合物基氧化钨纳米复合薄膜的微观结构,光学和光致变色性能的影响

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摘要

An in situ vapor deposition process has been used to create a photochromic, tungsten-oxide, polymer matrix nanocomposite. Under specific processing conditions, the composite consists of discrete tungsten-oxide nanoparticles distributed uniformly throughout the bulk of an optically transparent fluoropolymer matrix. Ultraviolet exposure of the nanocomposite produces characteristic photochromic changes that result in a 40% change in optical transmission. Optical absorption measurements yield a value of 3.08 eV for the bandgap of the tungsten-oxide particles. Incorporating oxygen as a supplementary deposition agent in the synthesis process increased the transparency of the films in the visible region, increased the change in transmission due to the photochromic effect, and led to the percolation of larger nanoparticles near the film surface. Growth of particles in this region allowed the nanocomposite to be bleached readily in an oxygen atmosphere while retaining photochromic activity.
机译:原位气相沉积工艺已用于创建光致变色的氧化钨聚合物基体纳米复合材料。在特定的加工条件下,复合材料由离散的氧化钨纳米颗粒组成,这些纳米颗粒均匀地分布在整个光学透明的含氟聚合物基质中。纳米复合材料的紫外线曝光会产生特征性的光致变色变化,从而导致光透射率发生40%的变化。光学吸收测量得出氧化钨颗粒的带隙为3.08 eV。在合成过程中掺入氧气作为辅助沉积剂,可增加膜在可见光区域的透明性,由于光致变色效应而增加透射率的变化,并导致较大的纳米颗粒在膜表面附近渗透。在该区域中颗粒的生长允许纳米复合材料在氧气气氛中容易地漂白,同时保持光致变色活性。

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