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The relationship between the structural properties of bimetallic Pd-Sn/SiO_2 catalysts and their performance for selective citral hydrogenation

机译:双金属Pd-Sn / SiO_2催化剂的结构性质与其选择性柠檬酸加氢性能之间的关系

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The effect of Sn addition to Pd on the selective liquid-phase hydrogenation of citral to α,β-unsaturated alcohols (UA: nerol and geraniol) was examined. Pd-Sn/SiO_2 bimetallic catalysts were prepared by successive impregnation method and were characterized by transmission electronic microscopy (TEM) coupled with energy dispersive X-ray spectroscopy (EDX), temperature-programmed reduction (TPR), Fourier transform infrared (FTIR) spectroscopy of adsorbed CO, and X-ray photoelectron spectroscopy (XPS). Sn addition to Pd/SiO_2 catalysts significantly modifies their properties for citral hydrogenation performed at 130 °C, under 7 MPa and in isopropanol solvent, inducing a promoting effect on the UA selectivity. This promoting effect is related to the existence of a Pd-Sn interaction highlighted by EDX analysis, TPR under hydrogen and FTIR of adsorbed CO. The latter technique suggested the presence of a geometric effect on catalytic activity. Maximum UA selectivities (>75% at 30% citral conversion) were obtained when an alloy of the Pd_3Sn type is formed in the bimetallic particles, as confirmed by TPR and XPS. Moreover, FTIR measurements of the adsorbed CO singleton frequency as well as XPS binding energy shifts strongly imply an electron transfer from Sn to Pd, which is proposed to be responsible for enhanced adsorption of citral CO bond on the surface of Pd-Sn/SiO_2 bimetallic catalysts. To our knowledge, it is the first time that modified Pd catalysts lead to such important UA selectivity values during α,β-unsaturated aldehyde hydrogenation.
机译:研究了将锡添加到Pd中对柠檬醛选择性液相加氢成α,β-不饱和醇(UA:神经醇和香叶醇)的影响。采用连续浸渍法制备了Pd-Sn / SiO_2双金属催化剂,并通过透射电子显微镜(TEM),能谱X射线能谱(EDX),程序升温还原(TPR),傅里叶变换红外(FTIR)光谱进行了表征。吸附的CO和X射线光电子能谱(XPS)。将锡添加到Pd / SiO_2催化剂中可显着改变其在130℃,7 MPa下和在异丙醇溶剂中进行柠檬酸加氢的性能,从而对UA选择性产生促进作用。这种促进作用与EDX分析,氢气下的TPR和吸附的CO的FTIR所强调的Pd-Sn相互作用的存在有关。后者的技术表明存在催化活性的几何效应。通过TPR和XPS证实,当在双金属颗粒中形成Pd_3Sn型合金时,可获得最大的UA选择性(在30%的柠檬酸转化率下> 75%)。此外,FTIR测量吸附的CO单峰频率以及XPS结合能移动强烈暗示了电子从Sn转移到Pd,这被认为可增强Pd-Sn / SiO_2双金属表面上柠檬酸CO键的吸附。催化剂。据我们所知,这是首次在α,β-不饱和醛加氢过程中,改性Pd催化剂产生如此重要的UA选择性值。

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