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首页> 外文期刊>CERAMICS INTERNATIONAL >Synthesis and characterization of Sb-doped SnO2 with high near-infrared shielding property for energy-efficient windows by a facile dual-titration co-precipitation method
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Synthesis and characterization of Sb-doped SnO2 with high near-infrared shielding property for energy-efficient windows by a facile dual-titration co-precipitation method

机译:通过容易双滴定共沉淀法对高近红外屏蔽性能的SB掺杂SnO2的合成与表征,用于节能窗口

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摘要

Sb-doped SnO2 (ATO) powders were favorably synthesized using a dual-titration co-precipitation method for the application of energy-efficient windows. A dual-titration co-precipitation method can effectively inhibit the aggregation of primary nanoparticles, which is conducive to prepare stable dispersion applied to glazing materials for blocking part of solar radiation. Various annealing temperatures, doping molar ratios and ethanol content of precursor solution were used to investigate the influence on the morphology and phase composition of the as-synthesized ATO powders. The results illustrated that the reasonable reaction conditions to prepare ATO powders with near-infrared shielding property should be: the doping molar ratio of 10%, the content of ethanol in precursor solution of 100% and the annealing temperature of 1000 degrees C. Besides, ATO primary nanoparticles were gained ranging from 45 to 55 nm with a low aggregated degree. The ATO coating prepared by the ATO dispersion with 20 wt% demonstrated the optimal selective transmitted spectra, which simultaneously achieved the average visible transmittance of 80.15% but average near-infrared transmittance of 23.31%. In addition, a simulated experiment demonstrated that ATO coated glass exhibited a better near-infrared shielding property than ITO (Sn-doped In2O3) coated glass.
机译:使用双重滴定共沉淀法合成Sb掺杂的SnO 2(ATO)粉末,用于应用节能窗口。双滴定共沉淀法可以有效抑制初级纳米颗粒的聚集,这有利于制备稳定的分散体,该稳定的分散体适用于玻璃材料,用于阻挡部分太阳辐射。使用各种退火温度,掺杂摩尔比和前体溶液的乙醇含量来研究对合成的ATO粉末的形态和相组合物的影响。结果表明,用近红外屏蔽性能制备ATO粉末的合理反应条件应:掺杂摩尔比为10%,前体乙醇含量为100%,退火温度为1000℃。此外,还为100%, ATO初级纳米颗粒的测量范围为45至55nm,聚集度低。通过20wt%的ATO分散体制备的ATO涂层证明了最佳选择性透射光谱,其同时实现了80.15%但平均近红外透射率为23.31%的平均可见光透射率。此外,模拟实验表明,ATO涂层玻璃比ITO(SN-掺杂IN2O3)涂覆的玻璃显示出更好的近红外屏蔽性能。

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