首页> 外文期刊>RSC Advances >12-Molybdophosphoric acid anchored on aminopropylsilanized magnetic graphene oxide nanosheets (Fe3O4/GrOSi(CH2)(3)-NH2/H3PMo12O40): a novel magnetically recoverable solid catalyst for H2O2-mediated oxidation of benzylic alcohols under solvent-free conditions
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12-Molybdophosphoric acid anchored on aminopropylsilanized magnetic graphene oxide nanosheets (Fe3O4/GrOSi(CH2)(3)-NH2/H3PMo12O40): a novel magnetically recoverable solid catalyst for H2O2-mediated oxidation of benzylic alcohols under solvent-free conditions

机译:在氨基丙基硅烷烯烯氧化物纳米片上锚定的12-钼磷酸(Fe3O4 / Grosi(3) - NH2 / H3PMO12O40):在无溶剂条件下的H 2 O 2介导的H2O2介导的苄基醇氧化的新型磁能可回收固体催化剂

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摘要

In this work, 12-molybdophosphoric acid (H3PMo12O40, HPMo) was chemically anchored onto the surface of aminosilanized magnetic graphene oxide (Fe3O4/GrOSi(CH2)(3)-NH2) and was characterized using different physicochemical techniques, such as powder X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), Raman spectroscopy, energy-dispersive X-ray analysis (EDX), scanning electron microscopy (SEM), BET specific surface area analysis and magnetic measurements. The results demonstrated the successful loading of HPMo (similar to 31.5 wt%) on the surface of magnetic aminosilanized graphene oxide. XRD patterns, N-2 adsorption-desorption isotherms and SEM images confirm the mesostructure of the sample. FT-IR and EDX spectra indicate the presence of the PMo(12)O(40)(3-)polyanions in the nanocomposite. The as-prepared Fe3O4/GrOSi(CH2)(3)-NH2/HPMo nanocomposite has a specific surface area of 76.36 m(2) g(-1) that is much higher than that of pure HPMo. The selective oxidation of benzyl alcohol to benzaldehyde was initially studied as a benchmark reaction to evaluate the catalytic performance of the Fe3O4/GrOSi(CH2)(3)NH2/HPMo catalyst. Then, the oxidation of a variety of substituted primary and secondary activated benzylic alcohols was evaluated with H2O2 under solvent-free conditions. Under the optimized conditions, all alcohols were converted into the corresponding aldehydes and ketones with very high selectivity ($99%) in moderate to excellent yields (60-96%). The high catalytic performance of the nanocomposite was ascribed to its higher specific surface area and more efficient electron transfer, probably due to the presence of GrO nanosheets. The nanocomposite catalyst is readily recovered from the reaction mixture by a usual magnet and reused at least four times without any observable change in structure and catalytic activity.
机译:在这项工作中,12-钼磷酸(磷钼酸,HPMO)进行化学锚定在胺硅烷磁性氧化石墨烯的表面上(四氧化三铁/ GrOSi(CH 2)(3)-NH 2),并使用不同的物理化学技术,例如粉末的特征在于X- X射线衍射(XRD),傅里叶变换红外光谱(FT-IR),拉曼光谱,能量色散X射线分析(EDX),扫描电子显微镜(SEM),BET比表面积分析及磁测量。结果表明HPMO的成功加载磁性胺硅烷化的氧化石墨烯的表面上(类似31.5重量%)。 XRD图案,N-2吸附 - 脱附等温线和SEM图像证实样品的细微结构。 FT-IR和EDX光谱表明的PMO(12)O(40)(3-)聚阴离子在所述纳米复合材料的存在。所制备的四氧化三铁/ GrOSi(CH 2)(3)-NH 2 / HPMO纳米复合材料具有的76.36米(2)克(-1),其比纯HPMO的高得多的比表面积。苄醇苯甲醛的选择性氧化最初进行了研究作为基准反应来评估的Fe3O4 / GrOSi(CH 2)(3)NH 2 / HPMO催化剂的催化性能。然后,多种取代的伯和仲激活苄醇氧化用H 2 O 2无溶剂条件下进行评价。在优化的条件下,所有的醇转化成相应的醛和酮与适中非常高的选择性($ 99%),以优异的产率(60-96%)。纳米复合材料的高的催化性能归因于它的高的比表面积和更有效的电子转移,这可能是由于纳米片GRO的存在。所述纳米复合材料的催化剂可容易地从反应混合物中通过通常的磁体回收并没有在结构和催化活性的任何可观察到的变化重复使用的至少四倍。

著录项

  • 来源
    《RSC Advances》 |2018年第13期|共13页
  • 作者单位

    Lorestan Univ Chem Dept Khorramabad 6815144316 Iran;

    Payame Noor Univ Chem Dept Tehran 193954697 Iran;

    Payame Noor Univ Chem Dept Tehran 193954697 Iran;

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

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