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Preparation of TiPt_3 fine particles having higher catalytic activity than Pt

机译:制备具有较高催化活性的Tipt_3细颗粒比Pt

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Ti-Pt intermetallic compounds were prepared by arc melting the stoichiometric mixture of Ti and Pt. TiPt_3 crushed in air and reduced in flowing hydrogen was found to be more active than Pt powder for H_2-D_2 equilibration and ethylene hydrogenation. It was selective for the formation of butenes in 1,3-butadiene hydrogenation, whereas Pt hydrogenated butadiene into butane. To obtain the fine particles of TiPt_3 intermetallic compound, the reduction of Pt/TiO_2, the CVD of titanocene onto Pt/SiO_2 and the successive impregnation of Pt onto TiO_2/SiO_2 were examined. The successive impregnation catalyst with Ti/Pt=1/3 was more active than Pt/SiO_2 for the ethylene hydrogenation and highly selective for the butene formation in butadiene hydrogenation. The XRD pattern of this catalyst indicated the diffraction of Pt metal with crystallite diameter of ca. 4 nm. It is concluded that the successive impregnation catalyst contains Pt fine particles completely covered by the layer of active and selective TiPt_3.
机译:通过熔化Ti和Pt的化学计量混合物来制备Ti-Pt金属间化合物。发现Tipt_3在空气中挤压并在流动的氢气中降低,比对于H_2-D_2平衡和乙烯氢化的Pt粉末更有效。它是选择在1,3-丁二烯氢化中形成丁烯的形成,而Pt氢化丁二烯进入丁烷。为了获得Tipt_3金属间化合物的细颗粒,研究了Pt / TiO_2的降低,钛烯的CVD在Pt / SiO_2上以及连续浸渍Pt到TiO_2 / SiO_2上。具有Ti / Pt = 1/3的连续浸渍催化剂比Pt / SiO_2更活跃,对于乙烯氢化,高度选择丁二烯氢化的丁烯形成。该催化剂的XRD图案表明PT金属的衍射与CA的微晶直径。 4纳米。得出结论,连续的浸渍催化剂含有完全被活性和选择性Tipt_3层覆盖的Pt细颗粒。

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