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Properties of modified zirconia used as Friedel-Crafts-acylation catalysts

机译:用作Friedel-Crafts-酰化催化剂的改性氧化锆的性质

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Both precipitated and aerogel synthesized zirconia were modified employing gaseous and solid compounds, respectively, as well as concentrated mineral acids. The sulfur and phosphorous-containing samples were characterized by nitrogen adsorption, Xray diffraction, FTIR pyridine adsorption, ammonia TPD, and 1-butene isomerization. Modification of zirconia samples results in enhanced Bronsted acidity and catalytic activity. Especially ammonium sulfate and sulfite generate strong acidic centers at the surface in high concentrations. As was shown on the basis of XPS measurements the final calcination step in air converts the sulfite into surface sulfate, resulting finally in the same, or at least very similar, surface states of both differently treated samples. Some few degrees enhanced catalytic activities were obtained using sulfated zirconia aerogels. Applied to the benzoylation of anisole, a slurry of these catalytically active zirconia samples yields similar high conversion degrees as nonafluorobutanesulfonic acid known as an excellent catalyst for this reaction in homogeneous solution. There is evidence to assume that the benzoylation reaction under the conditions used occurs exclusively at Bronsted acid sites but not at Lewis sites. A hypothetical path for the action of a sulfated zirconia surface in the catalytic step is proposed. (C) 1998 Academic Press. [References: 21]
机译:分别使用气态和固态化合物以及浓无机酸对沉淀的和气凝胶合成的氧化锆进行了改性。通过氮吸附,X射线衍射,FTIR吡啶吸附,氨TPD和1-丁烯异构化来表征含硫和磷的样品。氧化锆样品的改性导致增强的布朗斯台德酸度和催化活性。特别是硫酸铵和亚硫酸盐在高浓度时会在表面产生强酸性中心。如根据XPS测量所显示的,空气中的最终煅烧步骤将亚硫酸盐转化为表面硫酸盐,最终导致两种不同处理的样品具有相同或至少非常相似的表面状态。使用硫酸化的氧化锆气凝胶可以提高催化活性。将这些具有催化活性的氧化锆样品的浆液应用于苯甲醚的苯甲酰化反应,可得到与九氟丁烷磺酸相似的高转化率,而后者被认为是均相溶液中该反应的极佳催化剂。有证据认为在所用条件下的苯甲酰化反应仅发生在布朗斯台德酸位点,而不发生在路易斯位点。提出了在催化步骤中硫酸化氧化锆表面作用的假想路径。 (C)1998年学术出版社。 [参考:21]

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