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首页> 外文期刊>Catalysis science & technology >Direct amination of benzene to aniline with H2O2 and NH3H2O over Cu/SiO2 catalyst
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Direct amination of benzene to aniline with H2O2 and NH3H2O over Cu/SiO2 catalyst

机译:直接将苯在Cu/SiO2催化剂上用H2O2和NH3H2O苯氨酸

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The direct amination of benzene to aniline with H2O2 and NH3·H2O was studied using a series of Cu/SiO2 catalysts with mesoporous structures under mild conditions, and an acceptable yield (5.4%) and selectivity (74.0%) to aniline was obtained. Ultraviolet-visible diffuse reflectance spectroscopy, Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy demonstrated that some of the Cu atoms were incorporated into the mesoporous silica network forming Cu-O-Si species, which enabled the selective activation of the N-H bond of NH3. The medium-strong acid sites were beneficial for the amination reaction. The concentration of the reactants was found to be another critical factor for aniline formation. The amination of the aromatic ring of substituted benzenes was also investigated under the optimized conditions.
机译:使用一系列具有介孔结构的CU/SIO2催化剂研究在轻度条件下,使用H2O2和NH3·H2O的苯直接胺化对苯胺进行了研究,并获得了可接受的产率(5.4%)和对苯胺的选择性(74.0%)。 紫外线可见的弥散反射光谱,傅立叶变换红外光谱和X射线光电子光谱表明,某些CU原子被掺入中孔网络中,形成了Cu-O-O-SI物种,从而使NH3键的选择性激活NH3键的选择性激活 。 中尖酸位点对胺化反应有益。 发现反应物的浓度是苯胺形成的另一个关键因素。 在优化条件下,还研究了取代苯的芳香环的胺化。

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