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首页> 外文期刊>Journal of Catalysis >Preparation and Characterization of Supported Bimetallic Pt-Au and Pt-Cu Catalysts from Bimetallic Molecular Precursors
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Preparation and Characterization of Supported Bimetallic Pt-Au and Pt-Cu Catalysts from Bimetallic Molecular Precursors

机译:双金属分子前驱体负载双金属Pt-Au和Pt-Cu催化剂的制备与表征

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Silica-supported bimetallic Pt-Cu and Pt-Au catalysts were prepared using bimetallic molcular cluster precursors as the metal source. The molecular precursors were adsorbed onto the sup port from an organic solvent, dried under vacuum,calcined under flowing oxygen, and reduced with hydrogen. The resulting catalysts wee characterized with CO chemisorption, diffuse reflectance Fourier transform spectroscopy (DRIFTS)of adsorbed CO, transmission electron microscopy (TEM),and energy dispersive spectroscopy (EDS). The new catalysts were also compared to traditionally prepared Pt and Pt-Cu catalysts (wetness impregnation or coimpregnation)that had been subjected to identical activation conditions. When the molecular cluster precursors were used as catalyst precursors, small and uniform bimetallic particles with high Pt dispersions were prepared. The DRIFTS spectrum of CO bound to the cluster-derived Pt-Cu catalyst was exceptionally broad and indicated a large red shift in v(C ident to O)relative to Pt. Catalytic performance was evaluated with the hexane conversion reaction. Both cluster-derived catalysts showed enhanced selectivity for light hydrocarbon production (cracking)and decreased activity for nondestructive alkane reforming and dehydrocyclization reactions. The cluster-derived catalysts had nearly identical distributions of light hydrocarbon;these distributions indicated a propensity for internal C-C bond cleavage. Despite the similarities of these fission patterns, the Pt-Au catalyst had greatly enhanced resistance to deactivation processes while the Pt-Cu had no superior deactivation performance over the traditional Pt catalyst.
机译:使用双金属分子簇前驱体作为金属源,制备了二氧化硅负载的双金属Pt-Cu和Pt-Au催化剂。将分子前体从有机溶剂吸附到支持物上,在真空下干燥,在流动的氧气下煅烧,并用氢气还原。所得催化剂的特征在于CO化学吸附,吸附的CO的漫反射傅里叶变换光谱法(DRIFTS),透射电子显微镜(TEM)和能量色散光谱法(EDS)。还将新催化剂与经过相同活化条件的传统制备的Pt和Pt-Cu催化剂(润湿浸渍或共浸渍)进行了比较。当分子簇前体用作催化剂前体时,制备了具有高Pt分散度的小且均匀的双金属颗粒。与团簇衍生的Pt-Cu催化剂结合的CO的DRIFTS光谱异常宽,表明相对于Pt,v(C ident到O)的红移很大。用己烷转化反应评价催化性能。两种簇状催化剂均显示出对轻质烃生产(裂解)的选择性提高,并且对非破坏性烷烃重整和脱氢环化反应的活性降低。团簇衍生的催化剂具有几乎相同的轻烃分布;这些分布表明内部C-C键断裂的倾向。尽管这些裂变模式相似,但Pt-Au催化剂却大大提高了对失活过程的抵抗力,而Pt-Cu却没有比传统Pt催化剂优越的失活性能。

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