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首页> 外文期刊>Chemistry: A European journal >Characterization and catalytic-hydrogenation behavior of SiO2-embedded nanoscopic Pd, Au, and Pd-Au alloy colloids
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Characterization and catalytic-hydrogenation behavior of SiO2-embedded nanoscopic Pd, Au, and Pd-Au alloy colloids

机译:SiO2包埋的纳米Pd,Au和Pd-Au合金胶体的表征和催化加氢行为

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摘要

Colloids embedded in a silica sol-gel matrix were prepared by using fully alloyed Pd-Au colloids, and pure Pd and An colloids stabilized with tet-raalkylammonium bromide following a modified sol-gel procedure with tetrahydrofuran (THF) as the solvent. Tet-raethoxysilicate (TEOS) was used as the precursor for the silica support. The molar composition of the sol was TEOS/THF/H2O/HCl = 1:3.5:4:0.05 for the bimetallic Pd-Au and TEOS/THF/ H2O/HCl = 1:4.5:4:0.02 for Pd and Au monometallic systems. After refluxing, the colloid was added as a 4.5 wt % solution in THF for Pd-Au, 10.2 wt % solution in THF for Pd and 8.4 wt % solution in THF for An at room temperature. The gelation was carried out with vigorous stirring (4 days) under an Ar atmosphere. Following these procedures, bimetallic Pd-Au-SiO2 catalysts with 0.6 and 1 wt% metal, and monometallic Pd- and Au-SiO2 catalysts with 1 wt % metal were prepared. These materials were further treated following four different routes: 1) by simple drying, 2) in which the dried catalysts were calcined in air at 723 K and then reduced at the same temperature, 3) in which they were directly reduced in hydrogen at 723 K, and 4) in which the surfactant was extracted using an ethanol-heptane azeotropic mixture. The catalysts were characterized by nitrogen adsorption-desorption isotherms at 77 K, H-2 chernisorption measurements, solid-state H-1, C-13, Si-29-CP/MAS-NMR spectroscopy, powder. X-ray diffraction (XRD), small angle X-ray scattering (SAXS), X-ray photoelectron spectroscopy (XPS), transmission electron microscopy (TEM), and Au-197 Mossbauer spectroscopy. The physical characterization by a combination of these techniques has shown that the size and the structural characteristics of the Pd-Au colloid precursor are preserved when embedded in an SiO2 matrix. Catalytic tests were carried out in selective hydrogenation of 3-hexyn1-ol, cinnamaldehyde, and styrene. These data showed evidence that alloying Pd with Au in bimetallic colloids leads to enhanced activity and most importantly to improved selectivity. Also, the combination of the two metals resulted in catalysts that were very stable against poisoning, as was evidenced for the hydrogenation of styrene in the presence of thiophene.
机译:通过使用完全合金化的Pd-Au胶体,纯Pd和Pd和An制备胶体,该胶体是在四氢呋喃(THF)作为溶剂的改进的溶胶-凝胶程序之后,通过四溴呋喃烷基溴化铵稳定化的。四乙氧基硅酸酯(TEOS)被用作二氧化硅载体的前体。对于双金属Pd-Au,溶胶的摩尔组成为TEOS / THF / H2O / HCl = 1:3.5:4:0.05,对于Pd和Au单金属体系,TEOS / THF / H2O / HCl = 1:4.5:4:0.02 。回流后,在室温下,胶体以4.5重量%的Pd-Au的THF溶液,10.2重量%的Pd的THF溶液和8.4重量%的THF的溶液添加。在Ar气氛下剧烈搅拌(4天)进行胶凝。按照这些步骤,制备具有0.6和1重量%的金属的双金属Pd-Au-SiO 2催化剂,以及具有1重量%的金属的单金属Pd-和Au-SiO 2催化剂。这些材料按照以下四种不同的途径进行进一步处理:1)通过简单干燥,2)将干燥的催化剂在723 K的空气中煅烧,然后在相同的温度下还原,3)在723的氢气中将其直接还原K,和4),其中使用乙醇-庚烷共沸混合物萃取表面活性剂。通过在77 K下的氮吸附-解吸等温线,H-2吸附测量,固态H-1,C-13,Si-29-CP / MAS-NMR光谱,粉末来表征催化剂。 X射线衍射(XRD),小角X射线散射(SAXS),X射线光电子能谱(XPS),透射电子显微镜(TEM)和Au-197 Mossbauer光谱。通过这些技术的组合进行的物理表征表明,当将Pd-Au胶体前体包埋在SiO2基体中时,其尺寸和结构特征得以保留。在3-hexyn1-ol,肉桂醛和苯乙烯的选择性加氢中进行了催化测试。这些数据表明,在双金属胶体中将Pd与Au合金化可提高活性,最重要的是可提高选择性。而且,两种金属的组合产生了对中毒非常稳定的催化剂,如在噻吩存在下苯乙烯的氢化所证明的。

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