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首页> 外文期刊>Catalysis science & technology >Tailoring the morphology of Ni-Pt nanocatalysts through the variation of oleylamine and oleic acid: a study on oxygen reduction from synthesis to fuel cell application
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Tailoring the morphology of Ni-Pt nanocatalysts through the variation of oleylamine and oleic acid: a study on oxygen reduction from synthesis to fuel cell application

机译:裁剪的形态学Ni-Pt nanocatalysts通过油胺的变化和油的从合成酸:研究氧气减少燃料电池的应用

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Recent research has focused on the control of the geometric shape of nanoparticles (NPs) to improve their catalytic activity for the oxygen reduction reaction (ORR) in PEM fuel cells. This work studies the effect of the Oam:Oac ratio on the size, morphology, and catalytic activity of several carbon-supported Ni-Pt nanomaterials. Electrochemical tests using ring-disk electrode techniques were used to evaluate the catalytic activity and peroxide formation toward the ORR in acid media. STEM, SEM, EDS, and XRD were performed to study the physical properties of the nanocatalysts synthesized. UV-vis and FTIR spectroscopy were used to characterize the metal-ligand complexes formed during the synthesis. Additionally, accelerated electrochemical degradation testing was undertaken to evaluate the stability of the catalysts. The best nanomaterial in terms of high catalytic activity and stability was chosen and applied as the cathode for fuel cell evaluations. Experimental results revealed that the exclusive use of Oam during the synthesis resulted in polyhedral nanoparticles with the best catalytic activity toward the ORR. On the other hand, an increase in Oac content caused a decrease in Ni content through the formation of a Ni2+:carboxylate complex which promotes nanoparticles smaller in size, variations in their morphology, and a decrease in their catalytic activity.
机译:最近的研究关注的控制纳米颗粒的几何形状(NPs)改善氧还原的催化活性在PEM燃料电池反应(ORR)。研究Oam的影响:Oac比率上大小、形态和催化活性几个carbon-supported Ni-Pt纳米材料。使用ring-disk电极电化学测试技术被用来评估催化活动和过氧化形成向奥尔酸的媒体。进行研究的物理性质nanocatalysts合成。光谱被用来描述metal-ligand复合物中形成的合成。电化学降解测试进行评估的稳定性催化剂。选择催化活性和稳定性作为燃料电池的阴极应用评估。实验结果显示,排斥使用Oam导致合成过程多面体纳米粒子与最好的催化活动向奥尔。增加Oac内容倪下降造成的通过组建一个内容Ni2 +:羧酸盐复杂的促进纳米粒子尺寸小,变化他们的形态,减少他们的催化活性。

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