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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structural Characterization of Tungsten Phosphide (WP) Hydrotreating Catalysts by X-ray Absorption Spectroscopy and Nuclear Magnetic Resonance Spectroscopy
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Structural Characterization of Tungsten Phosphide (WP) Hydrotreating Catalysts by X-ray Absorption Spectroscopy and Nuclear Magnetic Resonance Spectroscopy

机译:X射线吸收光谱法和核磁共振波谱法研究磷化钨(WP)加氢处理催化剂的结构特征

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This paper presents a detailed discussion of the structure of tungsten phosphide and its relationship to simpler crystalline forms. The structure (space group Pbnm) is based on distorted hexagonal prisms with the phosphorous atoms forming P-P chains. Measurements by ~(31)P magic angle spinning nuclear magnetic resonance show that there is only one type of phosphorus with a Knight shift of 255 ppm form 85% H_3PO_4, which is located in a highly anisotropic environment. Numerical simulations of extended X-ray absorption fine structure data at the W L_3-edge give good agreement with crystallographic data. The W-P distance in WP was found to be 0.246 nm compared to the value of 0.247 nm obtained by X-ray diffraction. The catalytic activity of tungsten phosphide in the hydrotreating of a simulated petroleum feed is reported and compared to those of other tungsten compounds on an areal basis. Bulk (WP) and supported tungsten phosphide (WP/SiO_2) are found to be more active in HDS and HDN than tungsten carbide (WC), tungsten nitride (W_2N), tungsten sulfide (WS_2), and more active in HDN than a commercial Ni-Mo-S/Al_2O_3 catalyst. The enhanced activity may be related to a considerably reduced white line area in the X-ray absorption edge of WP and WP/SiO-2 compared to W metal, which makes their electronic structure resemble those of the highly active elements, Os and Ir, to the right in the periodic table.
机译:本文详细讨论了磷化钨的结构及其与较简单晶体形式的关系。结构(空间群Pbnm)基于扭曲的六边形棱镜,磷原子形成P-P链。 〜(31)P魔角旋转核磁共振的测量结果表明,只有8种H_3PO_4形式的磷具有Knight位移为255 ppm的磷,它位于高度各向异性的环境中。在W L_3边缘扩展的X射线吸收精细结构数据的数值模拟与晶体学数据具有很好的一致性。与通过X射线衍射获得的0.247nm的值相比,发现WP中的W-P距离为0.246nm。报告了磷化钨在模拟石油原料的加氢处理中的催化活性,并与其他钨化合物的催化活性进行了面积比较。发现散装(WP)和负载的磷化钨(WP / SiO_2)在HDS和HDN中比碳化钨(WC),氮化钨(W_2N),硫化钨(WS_2)更有活性,并且在HDN中比市售的活性更高。 Ni-Mo-S / Al_2O_3催化剂。与W金属相比,增强的活性可能与WP和WP / SiO-2的X射线吸收边缘中的白线面积显着减小有关,这使其电子结构类似于高活性元素Os和Ir,在元素周期表的右边

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