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Effects of chlorinated Pd precursors and preparation methods on properties and activity of Pd/TiO2 catalysts

机译:氯化Pd前体的影响及其制备方法对Pd / TiO2催化剂的性能和活性

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We investigated the effects of Pd precursors and preparation methods on the physicochemical properties and performance of Pd/TiO _(2) catalysts in the photocatalytic degradation of methyl violet. To confirm the influence of the precursors, Pd/TiO _(2) catalysts were prepared via chemical reduction (CR) using four different Pd precursors. Additionally, to determine the effects of preparation methods, Pd/TiO _(2) catalysts were fabricated using K _(2) PdCl _(4) precursor via three different methods: CR, deposition–precipitation (DP), and impregnation. The CO chemisorption results showed that the catalyst prepared via DP using the K _(2) PdCl _(4) precursor, i.e. , Pd/TiO _(2) _K_ DP , displayed the highest Pd dispersion of 12.42% owing to the stable formation of Pd(OH) _(2) , which strongly interacted with the –OH groups on the TiO _(2) support. Although the catalyst prepared via CR using the Pd(NH _(3) ) _(4) Cl _(2) ·H _(2) O (PA) precursor, i.e. , Pd/TiO _(2) _PA_ CR , had the lowest Pd dispersion of 0.7%, it exhibited the highest absorption of 26% after 30 min in the dark. It was found that high Pd ~(2+) /Pd ~(0) ratio in dark conditions adversely affected the absorption of MV owing to electrostatic repulsion between the cationic dyes and metal nanoparticles. However, the Pd dispersion and the specific surface area played a key role in the photocatalytic activity under UV irradiation. Pd/TiO _(2) _K_ CR with higher Pd dispersion showed the highest photocatalytic activity and reaction rate of 0.0212 min ~(?1) .
机译:我们研究了Pd前体的影响和制备方法对甲基紫杉的光催化降解中Pd / TiO _(2)催化剂的物理化学性质和性能。为了确认前体的影响,通过使用四种不同的Pd前体通过化学还原(Cr)制备Pd / TiO _(2)催化剂。另外,为了确定制备方法的效果,通过三种不同方法使用K _(2)PdCl _(4)前体制备Pd / TiO _(2)催化剂:Cr,沉积沉淀(DP)和浸渍。 CO化学吸附结果表明,由于稳定​​的形成,通过DP通过DP制备的催化剂通过DP,即Pd / TiO _(2)_K_DP,由于稳定​​的形成显示了12.42%的最高PD分散体Pd(OH)_(2),其与TiO _(2)支持的-OH基团强烈相互作用。虽然催化剂通过CR使用Pd(NH _(3))_(4)Cl _(2)·H _(2)O(PA)前体,即Pd / TiO _(2)_PA_Cr,但具有最低PD分散体为0.7%,在黑暗中在30分钟后表现出最高吸收26%。结果发现,由于阳离子染料和金属纳米颗粒之间的静电排斥,高pd〜(2+)/ pd〜(0)比对Mv的吸收不利影响。然而,PD分散和特定表面积在紫外线照射下在光催化活性中发挥了关键作用。具有较高PD分散体的Pd / TiO _(2)_k_cr显示出最高的光催化活性和0.0212分钟的反应速率〜(?1)。

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