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Nano-sized mesoporous phosphated tin oxide as an efficient solid acid catalyst

机译:纳米尺寸的介孔磷化锡作为有效的固体酸催化剂

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Herein, we prepared a mesoporous tin oxide catalyst (mSnO(2)) activated with phosphate species by the adsorption of phosphate ions from a phosphoric acid solution onto tin oxyhydroxide (Sn(OH)(4)) surface. The phosphate content ranged from 3 to 45 wt%. The nonaqueous titration of n-butylamine in acetonitrile was used to determine the total surface acidity level. FTIR of chemically adsorbed pyridine was used to differentiate between the Lewis and Bronsted acid sites. Thermal and X-ray diffraction analysis indicated that the addition of phosphate groups stabilized the mesostructure of mSnO(2) and enabled it to keep its crystalline size at the nanoscale. FTIR analysis indicated the polymerization of the HPO42- groups into P2O74-, which in turn reacts with SnO2 to form a SnP2O7 layer, which stabilizes the mesoporous structure of SnO2. The acidity measurements showed that the phosphate species are distributed homogeneously over the mSnO(2) surface until surface saturation coverage at 25 wt% PO43-, at which point the acid strength and surface acidity level are maximized. The catalytic activity was tested for the synthesis of hydroquinone diacetate, where it was found that the % yield of hydroquinone diacetate compound increased gradually with the increase in PO43- loading on mSnO(2) until it reached a maximum value of 93.2% for the 25% PO43-/mSnO(2) catalyst with 100% selectivity and excellent reusability for three consecutive runs with no loss in activity.
机译:在此,我们制备了通过从磷酸溶液的磷酸盐离子吸附到氧羟基氧化锡(Sn(OH)(4))表面上用磷酸盐离子而用磷酸盐物质进行活化的介孔氧化锡催化剂(MSNO(2))。磷酸盐含量范围为3至45重量%。乙腈中的非水滴定滴定滴定滴定法测定总表面酸度水平。化学吸附的吡啶的FTIR用于区分路易斯和伪造酸位点。热和X射线衍射分析表明,磷酸盐基团的加入稳定了MSNO(2)的腹部结构,使其使其保持其在纳米级的结晶尺寸。 FTIR分析表明将HPO42-基团聚合成P2O74-,其又与SnO 2反应形成SNP2O7层,其稳定SnO2的介孔结构。酸度测量表明,磷酸盐物质在MSNO(2)表面上均匀分布,直到表面饱和覆盖率在25wt%PO43-,此时酸强度和表面酸度水平最大化。测试催化活性用于合成氢醌二乙酸酯,发现其氢醌二乙酸化合物的%产率随着MSNO(2)上的PO43-负载增加而逐渐增加,直至其达到25的最大值为93.2% %PO43- / MSNO(2)催化剂具有100%选择性和优异的可重用性,连续三次运行,无活性损失。

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  • 来源
    《RSC Advances 》 |2019年第2期| 共9页
  • 作者单位

    Mansoura Univ Dept Chem Fac Sci Mansoura Egypt;

    Mansoura Univ Dept Chem Fac Sci Mansoura Egypt;

    Mansoura Univ Dept Chem Fac Sci Mansoura Egypt;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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