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Nanostructured Pd/Sb_2O_3: A new and promising fuel cell electrocatalyst and non-enzymatic amperometric sensor for ethanol

机译:纳米结构的Pd / Sb_2O_3:一种新型的有前途的燃料电池电催化剂和乙醇非酶安培传感器

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This manuscript describes the synthesis and structural/morphological characterization of Sb2O3 nanostructures modified by Pd nanoparticles and its use as a Fuel Cells electrocatalyst and as non-enzymatic amperometric sensor for ethanol. Interesting Sb2O3 surface modifications due to Pd nanoparticles were observed, such as the loss of spherical shape and the appearance of superficial pores. As an electrocatalyst Pd/Sb2O3 exhibited two times higher catalytic activity at a constant potential than carbon-supported Pd nanoparticles to oxidize ethanol in alkaline media (current densities of 348 mu A cm(-2) and 165 mu A cm(-2) at-0.3 V vs. Ag/AgCl 3.0 M, respectively). To the extent of our knowledge this result is the first one describing such an enhancement of the Pd activity only by means of alteration of the support. Moreover, as an amperometric sensor for ethanol, the electrode showed a linear response in a broad range of concentrations with a detection limit of 0.10 mu M and sensitivity between of 1.47 to 1.00 mu AmM-1 cm(-2). The combined findings presented in this work revealed Pd/Sb2O3 can be a promising material for Direct Ethanol Fuel Cells and as a non-enzymatic amperometric sensor for ethanol.
机译:该手稿描述了被Pd纳米粒子修饰的Sb2O3纳米结构的合成,结构/形态学表征,以及其作为燃料电池电催化剂和乙醇非酶安培传感器的用途。观察到由于Pd纳米粒子引起的有趣的Sb2O3表面修饰,例如球形损失和表面孔的出现。作为电催化剂,Pd / Sb2O3在恒定电势下的氧化活性比碳负载的Pd纳米颗粒在碱性介质中氧化乙醇(电流密度为348μA cm(-2)和165μA cm(-2)时高两倍)。 -0.3 V相对于Ag / AgCl 3.0M。就我们所知,此结果是第一个仅通过改变支持物来描述Pd活性增强的结果。此外,作为乙醇的安培传感器,该电极在宽浓度范围内均表现出线性响应,检测极限为0.10μM,灵敏度在1.47至1.00μAmM-1cm(-2)之间。这项工作中提出的综合发现表明,Pd / Sb2O3可以用作直接乙醇燃料电池的有前途的材料,并且可以用作乙醇的非酶安培传感器。

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