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Controlled PtIr nanoalloy as an electro-oxidation platform for methanol reaction and ammonia detection

机译:控制PTIR纳米铝作为甲醇反应和氨检测的电氧化平台

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Herein, a surfactant-free, ethylene glycol-mediated synthesis of PtIr nanoalloys was optimized In particular, a post-synthesis treatment was identified as the key step in order to determine the nanoparticles size and their organization in the nanostructure, depending on the presence of a reducing agent and on pressure conditions. After synthesis, the as-obtained nanomaterials were broadly characterized: SEM and TEM images, EDX maps and XRD spectra showed the formation of nanorods with a few nanometers size and similar quantitative compositions of platinum and iridium. Afterward, the electrocatalytic activity towards the methanol oxidation reaction of the synthesized nanomaterials was tested and the best sample, treated under a hydrogen/nitrogen flow at 10 bar, exhibits a negligible onset potential (0.058 V) and a very high If/Ib ratio (2.5). Moreover, the aforementioned sample was tested as an electrochemical sensor for the detection of small traces of ammonia in an aqueous solution with a limit of detection of 4.88 mu M. The sensor was tested also in simulated wastewater coming from the fertilizer industry, showing proper operation and excellent selectivity.
机译:本文,特别优化了无表面活性剂,乙二醇介导的PTIR纳米铝合金的合成,鉴定了后合成后处理作为关键步骤,以确定纳米颗粒尺寸及其组织的纳米结构,这取决于存在还原剂和压力条件。在合成之后,广义表征了所得的纳米材料:SEM和TEM图像,EDX地图和XRD光谱显示纳米棒的形成,具有少数纳米尺寸和类似的铂和铱的定量组合物。之后,测试合成的纳米材料的甲醇氧化反应的电催化活性,并在10巴的氢/氮气流下处理的最佳样品表现出可忽略不计的发作潜力(0.058V)和非常高的IF / IB比率( 2.5)。此外,上述样品作为电化学传感器测试,用于检测水溶液中的小痕量氨,其检测为4.88 mu M.该传感器也在来自化肥工业的模拟废水中进行了测试,显示出适当的操作和出色的选择性。

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