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Platinum-loaded lanthanum-doped calcium titanate photocatalysts prepared by a flux method for photocatalytic steam reforming of methane

机译:由甲烷光催化蒸汽重整的通量方法制备铂负载镧掺杂钛酸钙催化剂,用于甲烷的光催化蒸汽重整

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Calcium titanate (CaTiO3) samples were prepared by a flux method with various parameters such as selection of the flux, presence or absence of the flux, and solute concentration in the molten mixture with the flux. These conditions much influenced the structural and physical properties like morphology, particle size, specific surface area, and photoabsorption bands. The photocatalytic activity of the samples loaded with Pt-cocatalyst (Pt/CaTiO3) was evaluated for the photocatalytic steam reforming of methane around room temperature. It was found that the sample prepared with a KCl flux realized 3.3 times higher photocatalytic activity than that prepared by a conventional solid-state reaction method. Further, La-doping to the CaTiO3 photocatalyst (Pt/CaTiO3:La) was examined. It was revealed that the La cation was successfully doped at the Ca site in the CaTiO3 lattice. It is observed that small amount of La-doping anomalously enhanced the crystal growth although it lowered the photocatalytic activity. In contrast, the sample with a moderate amount of La-doping such as 1 mol % exhibited 1.6 times higher photocatalytic activity than the non-doped sample. Although most of the structural properties such as morphology, particle size and specific surface area could not simply explain the improvement of photocatalytic activity, at least it was revealed that the defects giving rise to the absorption bands in visible light region decreased the photocatalytic activity.
机译:通过具有各种参数的助熔剂方法制备钛酸钙(CATIO3)样品,例如选择助焊剂的选择,存在或不存在,并用助焊剂溶液溶液。这些条件很大影响了形态,粒度,比表面积和光吸收带等结构和物理性质。加载有Pt-CocTalyst(Pt / CatiO3)的样品的光催化活性,评价甲烷周围的光催化蒸汽重整。发现用KCl助焊剂制备的样品实现了比通过常规固态反应方法制备的光催化活性较高的3.3倍。此外,检查了诱导CATIO3光催化剂(PT / CATIO3:LA)。据透露,La阳离子在CATIO3格中的CA位点成功掺杂。观察到,少量的La掺杂异常增强了晶体生长,尽管它降低了光催化活性。相反,具有中等量的La掺杂的样品如1摩尔%的光催化活性比非掺杂样品呈现1.6倍。尽管诸如形态学,粒度和比表面积的大多数结构性质不能简单地解释光催化活性的改善,但至少揭示了可见光区域中吸收带的缺陷降低了光催化活性。

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