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Fabrication of SrTiO3/g-C3N4 heterostructures for visible light-induced photocatalysis

机译:用于可见光诱导的光催化的SRTIO3 / G-C3N4异质结构的制备

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We investigated a new method for the preparation of visible light-activated heterostructured photocatalysts made up of SrTiO3 (STO) and g-C3N4 (CN). The photocatalysts were synthesized by the polymeric precursor method to obtain STO, which was further thermally treated at 550 degrees C for 2 h in presence of melamine at different proportions for CN formation. The SrTiO3/g-C3N4 heterostructures were termed as STOCN-Mel88%, STOCN-Mel92%, STOCN-Mel95%, STOCN-Mel97% and STOCN-Mel99% indicating the use of melamine at 88%, 92%, 95%, 97% or 99%. The SrTiO3/g-C3N4 heterostructures were characterized for their crystalline structure, optical properties, thermal stability, morphology and surface composition, and photocatalytic potential, which was evaluated by photodegradation of methylene blue dye and amiloride under visible light. The melamine content exhibited a strong influence on the formation of CN, as well as on the bulk structure, surface and photocatalytic properties of the SrTiO3/g-C3N4 heterostructures. The heterostructures were catalytically active under visible light due to their reduced band gap energy. The presence of oxygen vacancies in the STO phase associated with the CN phase improved the photogenerated electron-hole charge separation in the SrTiO3/g-C3N4 catalysts. The synthesis described here is efficient in obtaining visible light-activated photocatalysts that are applicable to photocatalytic processes under solar light.
机译:我们研究了一种制备由SrTiO3(STO)和G-C3N4(CN)组成的可见光活性的光催化剂的新方法。通过聚合物前体方法合成光催化剂以获得STO,其在550℃下在三聚氰胺的不同比例下在550℃下进一步热处理2小时,以用于CN形成。 SRTIO3 / G-C3N4异质结构称为STOCN-MEL88%,STOCN-MEL92%,STOCN-MEL95%,STOCN-MEL97%和STOCN-MEL99%,表明使用的三聚氰胺为88%,92%,95%,97 %或99%。 SRTIO3 / G-C3N4异质结构的特征在于它们的结晶结构,光学性质,热稳定性,形态学和表面组合物和光催化电位,通过光降解在可见光下的亚甲基蓝染料和氨基胺的光降解来评估。三聚氰胺含量对Cn的形成表现出强烈的影响,以及SRTIO3 / G-C3N4异质结构的散装结构,表面和光催化性质。由于其带隙能量降低,异质结构在可见光下催化活性。与CN相相关的STO相中氧空位的存在改善了SRTIO3 / G-C3N4催化剂中的光催化电子 - 空穴电荷分离。这里描述的合成是获得可见光的光激活光催化剂,其适用于太阳光下的光催化过程。

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