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A simple method for enhancing the catalytic activity of Pd deposited on carbon nanotubes used in direct formic acid fuel cells

机译:一种提高直接甲酸燃料电池中碳纳米管上沉积的Pd催化活性的简单方法

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Palladium catalysts deposited on carbon nanotubes are used as the anode material in a direct formic acid fuel cell (DFAFC). In this paper we propose a simple method for enhancing the catalytic activity of Pd deposited on carbon nanotubes for formic acid electrooxidation by using ammonia solution. Multiwall carbon nanotubes (MWCNTs) used as the catalyst support are oxidized with concentrated nitric acid for 6 and 50 h. During the oxidation polynuclear aromatic compounds (PACs) are formed. We propose the use of ammonia solution after the oxidation process to remove the PACs from the carbon nanotubes surface. The properties of differently functionalized MWCNTs are studied and the results show that the use of ammonia solution removes the PACs formed during the oxidation process. The oxidation time of the carbon nanotubes has also a significant effect on the properties of the obtained catalysts. The palladium catalysts deposited on MWCNTs oxidized for a shorter time and rinsed with ammonia solution exhibit the highest initial activity in electrooxidation of formic acid in DFAFC (P = 216 mW mg(pd)(-1)).
机译:沉积在碳纳米管上的钯催化剂在直接甲酸燃料电池(DFAFC)中用作阳极材料。在本文中,我们提出了一种简单的方法,可以通过使用氨溶液来增强沉积在碳纳米管上的Pd对甲酸进行电氧化的催化活性。用浓硝酸将用作催化剂载体的多壁碳纳米管(MWCNT)氧化6和50小时。在氧化过程中,形成多核芳族化合物(PAC)。我们建议在氧化过程之后使用氨溶液从碳纳米管表面去除PAC。研究了功能不同的多壁碳纳米管的性能,结果表明,使用氨水可以去除在氧化过程中形成的PAC。碳纳米管的氧化时间也对获得的催化剂的性质具有显着影响。沉积在MWCNT上的钯催化剂经较短时间氧化并用氨溶液冲洗后,在DFAFC中甲酸的电氧化中表现出最高的初始活性(P = 216 mW mg(pd)(-1))。

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