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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Aerosol route synthesis of Ni-CeO2-Al2O3 hybrid nanoparticle cluster for catalysis of reductive amination of polypropylene glycol
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Aerosol route synthesis of Ni-CeO2-Al2O3 hybrid nanoparticle cluster for catalysis of reductive amination of polypropylene glycol

机译:气溶胶途径合成Ni-CeO2-Al2O3杂交纳米粒子簇,用于聚丙二醇的还原胺化催化作用

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We demonstrated an aerosol-based approach to synthesize Ni-CeO2-Al2O3 hybrid nanostructure as a potent nanopowder catalyst for the production of polyetheramine via reductive amination of polypropylene glycol. The method combines a gas-phase evaporation-induced self-assembly with two-stage thermal treatments of the aerosol particles. The hybrid Ni-CeO2 nanoparticles (NPs) composed of ultrafine, homogeneously-distributed nanocrystallites of metallic Ni and ceria were shown to uniformly decorate on the surface of Al2O3 nanoparticle cluster (NPC). The composition, physical size and surface state of the hybrid nanostructure were tunable by design. It was found that hybridization with Al2O3 or CeO2 enhanced catalytic activity of the Ni catalyst. A high yield of approximate to 77% of the desired PEA and a high selectivity to primary amine (approximate to 100%) achieved simultaneously. The surface nitridation of Ni catalyst was effectively suppressed via the incorporation with CeO2 NPs. An enhanced operation stability was observed by using the Ni-CeO2-Al2O3 hybrid nanostructure as catalyst in comparison to the Ni-only NP. The work demonstrated a facile route for controlled gas-phase synthesis of hybrid nanopowder catalysts using Al2O3 NPC as the support matrix and CeO2 NP as the promoter to further enhance the performance of Ni catalyst toward reductive amination. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:我们证明了一种基于气溶胶的方法,将Ni-CeO2-Al2O3杂交纳米结构合成为有效的纳米粉末催化剂,用于通过聚丙二醇的还原胺化生产聚醚胺。该方法将气相蒸发诱导的自组装与气溶胶颗粒的两级热处理结合。由超细组成的杂合Ni-CeO2纳米颗粒(NPS),均匀分布的金属Ni和Ceria的纳米晶体组成,在Al 2 O 3纳米粒子簇(NPC)的表面上均匀地装饰。通过设计可调杂化纳米结构的组成,物理尺寸和表面状态。发现与Al 2 O 3或CeO 2的杂交增强了Ni催化剂的催化活性。高含量至77%的所需豌豆的近似和对伯胺(近似100%)的高选择性同时达到的。通过CEO2 NPS掺入,有效地抑制了Ni催化剂的表面氮化。通过使用Ni-CeO2-Al2O3杂交纳米结构与催化剂相比,通过使用Ni-CeO 2-Al 2 O 3杂交纳米结构观察到增强的操作稳定性。该工作证明了使用Al 2 O 3 NPC作为载体基质和CeO2 NP作为促进剂的受控气相合成的容易途径,以进一步增强Ni催化剂朝向还原胺化的性能。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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