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Highly Efficient Near Infrared Photothermal Conversion Properties of Reduced Tungsten Oxide/Polyurethane Nanocomposites

机译:氧化钨/聚氨酯纳米复合材料的高效近红外光热转换性能

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摘要

In this work, novel WO3-x/polyurethane (PU) nanocomposites were prepared by ball milling followed by stirring using a planetary mixer/de-aerator. The effects of phase transformation (WO3 → WO2.8 → WO2.72) and different weight fractions of tungsten oxide on the optical performance, photothermal conversion, and thermal properties of the prepared nanocomposites were examined. It was found that the nanocomposites exhibited strong photoabsorption in the entire near-infrared (NIR) region of 780–2500 nm and excellent photothermal conversion properties. This is because the particle size of WO3-x was greatly reduced by ball milling and they were well-dispersed in the polyurethane matrix. The higher concentration of oxygen vacancies in WO3-x contribute to the efficient absorption of NIR light and its conversion into thermal energy. In particular, WO2.72/PU nanocomposites showed strong NIR light absorption of ca. 92%, high photothermal conversion, and better thermal conductivity and absorptivity than other WO3/PU nanocomposites. Furthermore, when the nanocomposite with 7 wt % concentration of WO2.72 nanoparticles was irradiated with infrared light, the temperature of the nanocomposite increased rapidly and stabilized at 120 °C after 5 min. This temperature is 52 °C higher than that achieved by pure PU. These nanocomposites are suitable functional materials for solar collectors, smart coatings, and energy-saving applications.
机译:在这项工作中,新型的WO3-x /聚氨酯(PU)纳米复合材料通过球磨制备,然后使用行星式混合器/除气器进行搅拌。研究了相变(WO3→WO2.8→WO2.72)和不同重量分数的氧化钨对制备的纳米复合材料的光学性能,光热转化率和热性能的影响。研究发现,纳米复合材料在整个780-2500 nm的近红外(NIR)区域均表现出较强的光吸收性能,并具有出色的光热转换性能。这是因为通过球磨将WO3-x的粒径大大减小,并且它们被充分分散在聚氨酯基质中。 WO3-x中较高的氧空位浓度有助于有效吸收NIR光并将其转换为热能。尤其是,WO2.72 / PU纳米复合材料显示出大约20的强NIR光吸收。与其他WO3 / PU纳米复合材料相比,具有92%的高光热转化率和更好的导热率和吸收率。此外,当用红外光照射具有7wt%浓度的WO2.72纳米颗粒的纳米复合材料时,纳米复合材料的温度迅速升高并且在5分钟后稳定在120℃。该温度比纯PU的温度高52°C。这些纳米复合材料是太阳能收集器,智能涂料和节能应用的合适功能材料。

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