Flame spray synthesis of visible light active nanocrystalline bismuth oxide based

Kranthi K. Akurati, A. Vital, F. Reifler, A. Ritter, T. Graule
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Abstract

BaBiO3 nanoparticles have been synthesized by dissolving Ba and Bi precursors in a suitable solvent and spraying into the high temperature acetylene flame using an atomizing gas. Resulting powders were characterized by nitrogen physisorption (measuring specific surface area), x-ray diffraction (phase composition), transmission electron microscopy (size, shape and morphology of the particles), whilst UV-vis diffuse reflectance spectroscopy analyzed with the KubelkaMunk function has been used to study the visible light absorption of the photocatalyst and the optical band gaps. Specific surface area of the nanoparticles has been varied by changing the flow rate of the of the precursor solution that has significant influence on the combustion enthalpy density (CED) of the flame. Rate of degradation of formaldehyde under visible light illumination (>400 nm) has been used as the measure of the photocatalytic activity (PCA) of the particles whose specific surface area ranges from 5 to 50 m/g. Clear dependence of the specific surface area and crystallinity of the particles on the PCA has been observed which signifies the advantages of nanoparticles.
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火焰喷涂合成可见光活性氧化铋基纳米晶
将Ba和Bi前驱体溶解在合适的溶剂中,用雾化气体喷射到高温乙炔火焰中,合成了BaBiO3纳米颗粒。通过氮物理吸附(测量比表面积)、x射线衍射(相组成)、透射电子显微镜(颗粒的大小、形状和形貌)对所得粉末进行了表征,同时利用KubelkaMunk函数分析了紫外-可见漫反射光谱,研究了光催化剂的可见光吸收和光带隙。改变前驱体溶液的流速可以改变纳米颗粒的比表面积,对火焰的燃烧焓密度(CED)有显著影响。采用可见光照射(>400 nm)下甲醛的降解速率作为比表面积在5 ~ 50 m/g之间的颗粒的光催化活性(PCA)的度量。粒子的比表面积和结晶度明显依赖于PCA,这表明了纳米粒子的优势。
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