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CVD synthesis of carbon nanostructures and their applications as supports in catalysis : selective hydrogenation of cinnamaldehyde over Pt-Ru bimetallic catalysts, Electrocatalysts for electrodes in polyelectrolyte membrane fuel cells

机译:CVD碳纳米结构的合成及其在催化中的应用:在Pt-Ru双金属催化剂上对肉桂醛进行选择性加氢,聚电解质膜燃料电池中电极的电催化剂

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摘要

In this work, we describe the synthesis, structure, physical properties and some applications in catalysis of previously known carbon allotropes, and recently discovered carbon nanostructure (Chapter I). First, FB-OM-CVD deposition was used for metal or metal oxide deposition on metal oxide supports like alumina or silica, leading to the production of supported catalysts. The resulting material was used as catalyst for catalytic chemical vapor deposition of carbonaceous nanostructures i.e single- and multi-walled carbon nanotubes (SWCNTs, MWCNTs), carbon nanofibers (CNFs), and nitrogen doped carbon nanotubes (N-MWCNTs) and nanofibers (N-CNFs) (Chapter II). After catalyst removal by a H2SO4 or NaOH treatments and carboxylic surface group generation by a HNO3 treatment in the case of MWCNTs and CNFs, the carbon nanostructures were used as supports for heterogeneous catalysis. The hydrogenation of cinnamaldehyde was used as a model reaction to compare the performance of different bimetallic Pt-Ru catalysts as a function of the nature of the support. Detailed parametric studies as well as the effect of a heat treatment on the performance improvement of the Pt-Ru/MWCNT catalyst are presented. An explanation for the increase of performances upon heat treatment will be proposed after HREM, EDX, EXAFS and WAXS characterization of the catalyst (Chapter III). The prepared carbon nanostructures were also tested as supports for Pd based electrocatalysts for direct alkaline fuel cells applications in both cathodes for the ORR reaction and anodes for alcohols oxidation
机译:在这项工作中,我们描述了先前已知的碳同素异形体的合成,结构,物理性质及其在催化中的一些应用,以及最近发现的碳纳米结构(第一章)。首先,将FB-OM-CVD沉积用于在氧化铝或二氧化硅等金属氧化物载体上沉积金属或金属氧化物,从而生产了负载型催化剂。所得材料用作碳纳米结构即单壁和多壁碳纳米管(SWCNT,MWCNT),碳纳米纤维(CNF)以及氮掺杂碳纳米管(N-MWCNT)和纳米纤维(N)的催化化学气相沉积的催化剂。 -CNFs)(第二章)。对于MWCNT和CNF,在通过H2SO4或NaOH处理去除催化剂并通过HNO3处理生成羧基表面基团后,碳纳米结构被用作多相催化的载体。肉桂醛的氢化用作模型反应,以比较不同双金属Pt-Ru催化剂的性能随载体性质的变化。介绍了详细的参数研究以及热处理对Pt-Ru / MWCNT催化剂性能改进的影响。将在对催化剂进行HREM,EDX,EXAFS和WAXS表征后,提出热处理后性能提高的解释(第三章)。还测试了制备的碳纳米结构作为直接用于碱性燃料电池的Pd基电催化剂的载体,用于ORR反应的阴极和醇氧化的阳极

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    Teddy Jacques;

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  • 年度 2009
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