首页> 外文期刊>ChemCatChem >Ethane-Bridged Organosilica Nanotubes Functionalized with Arenesulfonic Acid and Phenyl Groups for the Efficient Conversion of Levulinic Acid or Furfuryl Alcohol to Ethyl Levulinate
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Ethane-Bridged Organosilica Nanotubes Functionalized with Arenesulfonic Acid and Phenyl Groups for the Efficient Conversion of Levulinic Acid or Furfuryl Alcohol to Ethyl Levulinate

机译:用芳磺酸和苯基官能化的乙烷桥接有机胺纳米管,用于将乙酰丙酸或糠醇的有效转化为乙酸乙酰硫酸乙酯

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摘要

A series of ethane-bridged organosilica nanotubes functionalized with arenesulfonic acid and phenyl groups (ArSO3H-Si(Et)Si-Ph-NTs) was fabricated successfully by a P123-directed sol-gel co-condensation route combined with hydrothermal treatment with a carefully adjusted P123-to-bis-silylated organic precursor-to-HCl molar ratio in the starting system. The morphological characteristics, textural properties, BrOnsted acidity, surface hydrophobicity, and structural integrity of the carbon/silica framework were characterized. The ArSO3H-Si(Et)Si-Ph-NTs materials were applied in the synthesis of ethyl levulinate from the esterification of levulinic acid and the ethanolysis of furfuryl alcohol, and the excellent catalytic activity was explained in terms of the strong BrOnsted acidity, unique hollow nanotube morphology, and enhanced surface hydrophobicity. Reusability tests confirmed that ArSO3H-Si(Et)Si-Ph-NTs can be reused for three or five times without a significant loss of activity.
机译:通过P123-型溶胶 - 凝胶共聚缩合途径成功地制备了一系列与芳磺酸和苯基(Arso3H-Si(et)Si-pH-NTS)官能化的乙烷 - 桥接有机胺纳米管。 调节P123-双甲硅烷基甲硅烷基化的有机前体 - HCL摩尔比在起始系统中。 表征了碳/二氧化硅框架的形态学特性,纹理性质,抗正囊,表面疏水性和结构完整性。 ArsO3H-Si(et)Si-pH-NTS材料在乙酰乙酸酯化的合成中应用了乙酰乙酸的酯化和糠醇的乙醇分解,并且在强大的布朗酸度方面解释了优异的催化活性,独特 空心纳米管形态,增强表面疏水性。 可重用性测试证实,ARSO3H-Si(et)Si-pH-NTS可以重复使用三到五次,而无需显着丧失活动。

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