氨水改性氧化石墨烯高效催化 Knoevenagel缩合反应
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TQ241.1

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Graphene Oxide Modified with Aqueous Ammonia Efficiently Catalyzed Knoevenagel Condensation
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The National Natural Science Foundation of China (General Program, Key Program, Major Research Plan)

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    摘要:

    通过浸渍处理制备了氨水改性氧化石墨烯样品,并考察了其在苯甲醛和丙二腈的Knoevenagel缩合反应中的催化性能,并通过X射线粉末衍射(XRD)、拉曼光谱(Raman)、傅立叶变换红外光谱(FT-IR)、NH3程序升温脱附(NH3-TPD)、元素分析等技术对催化剂进行表征。实验结果表明,氧化石墨烯经氨水改性后在苯甲醛和丙二腈的Knoevenagel缩合反应中表现出良好的催化性能,随着改性氨水浓度的增加,催化剂的活性不断增加。以5 wt%的氨水为改性剂制备的催化剂样品在60 ℃、4 h条件下催化苯甲醛和丙二腈的Knoevenagel缩合反应,苯甲醛的转化率可以高达93.6 %,产物苄亚基丙二腈的选择性为94.8%。催化剂经简单的过滤分离即可重复使用5次。表征结果显示,氨水改性氧化石墨烯,可以有效的将NH4+固载于氧化石墨烯表面。

    Abstract:

    Graphene oxide modified with aqueous ammonia samples were prepared by impregnation method, and the catalytic performances of the as-prepared samples in Knoevenagel condensation reaction of benzaldehyde with malononitrile were investigated. The properties of the catalysts were characterized by X-ray diffraction, Raman spectra, Fourier transform infrared spectroscopy, NH3-TPD and elemental analysis. Results indicated that graphene oxide modified with aqueous ammonia samples exhibited excellent performances in the Knoevenagel condensation reaction of benzaldehyde with malononitrile. The catalytic activity increased gradually with increasing the concentration of aqueous ammonia. A 93.6% conversion of benzaldehyde and a 94.8% selectivity of benzylidene malononitrile was obtained over graphene oxide modified with 5 wt% aqueous ammonia in the appropriate conditions. It is very important that the graphene oxide modified with aqueous ammonia samples can be reused for 5 times only by simple filtration after reaction. Characterization results indicated that graphene oxide modified by ammonia can effectively immobilize NH4+ on the surface of graphene oxide.

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薛冰.氨水改性氧化石墨烯高效催化 Knoevenagel缩合反应[J].精细化工,2018,35(9):

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  • 收稿日期:2017-08-17
  • 最后修改日期:2017-12-13
  • 录用日期:2017-12-22
  • 在线发布日期: 2018-08-08
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