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首页> 外文期刊>Journal of Catalysis >Non-noble metal catalysts for hydrogenation: A facile method for preparing Co nanoparticles covered with thin layered carbon
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Non-noble metal catalysts for hydrogenation: A facile method for preparing Co nanoparticles covered with thin layered carbon

机译:用于氢化的非贵金属催化剂:制备覆盖有薄层碳的Co纳米颗粒的简便方法

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Metallic cobalt nanoparticles with surface CoOx patches covered by thin layered carbon (named Co@C) have been directly synthesized by thermal decomposition of Co-EDTA complex. Raman spectra and HRTEM images suggest that discontinuities can be found in the disordered layered carbon. XPS shows that the CoOx patches in the Co@C nanoparticles can reduced to metallic Co by H-2 under reaction conditions (7 bar at 120 degrees C), and H-2-D-2 exchange experiments show that the reduced metallic Co nanoparticles covered by carbon layers can dissociate H-2. The Co@C nanoparticles show excellent activity and selectivity during chemoselective hydrogenation of nitroarenes for a wide scope of substrates under mild reaction conditions. Based on the results from DRIFTS adsorption experiments, we propose that metallic Co in the Co@C nanoparticles is the active phase. The role of the carbon layers is to protect the Co from overoxidation by air, leading to the chemoselective hydrogenation of nitroarenes. (C) 2016 Elsevier Inc. All rights reserved.
机译:通过Co-EDTA配合物的热分解,直接合成了表面CoOx斑片被薄层碳覆盖的金属钴纳米颗粒(称为Co @ C)。拉曼光谱和HRTEM图像表明,在无序层状碳中可以发现不连续性。 XPS表明,在反应条件下(120摄氏度下为7 bar),H-2可以通过H-2将Co @ C纳米颗粒中的CoOx补丁还原为金属Co,而H-2-D-2交换实验表明,还原的金属Co纳米颗粒被碳层覆盖的碳可以离解H-2。 Co @ C纳米粒子在温和的反应条件下,对多种底物进行硝基芳烃的化学选择性氢化时,均具有出色的活性和选择性。基于DRIFTS吸附实验的结果,我们提出Co @ C纳米颗粒中的金属Co是活性相。碳层的作用是保护Co免受空气的过度氧化,从而导致硝基芳烃的化学选择性氢化。 (C)2016 Elsevier Inc.保留所有权利。

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