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Preparation of an octahedral PtNi/CNT catalyst and its application in high durability PEMFC cathodes

机译:八面体PtNi / CNT催化剂的制备及其在高耐久性PEMFC阴极中的应用

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In order to promote the application of proton exchange membrane fuel cells (PEMFCs) in electric vehicles (EVs), it is important to improve the activity of cathode catalysts and the corrosion resistance of carbon supports under high potentials formed during transient vehicle operating conditions. An octahedral PtNi/CNT catalyst with a well-defined structure and enhanced oxygen reduction reaction (ORR) performance was prepared through a surfactant-assisted solvothermal method. Its mass activity and specific activity reach 5.5 and 8.5 times those of the commercial Pt/C catalyst, respectively, and its stability is also higher after durability testing. In addition, the membrane electrode assembly (MEA) fabricated using the octahedral PtNi/CNT catalyst in a cathode exhibits extremely outstanding durability under high potential, and the attenuations of its maximum power density and cell voltage at 600 mA cm ~(?2) are only 4.8% and 3.6%, respectively, which are far below those of the control prepared with commercial Pt/C. These results demonstrate that carbon materials with a graphite structure exhibit actual application potential in the preparation of octahedral catalysts. These carbon-supported octahedral catalysts are expected to be applied in PEMFC cathodes after the materials and preparation process are further improved.
机译:为了促进质子交换膜燃料电池(PEMFC)在电动汽车(EV)中的应用,重要的是在瞬态车辆运行条件下形成的高电势下,提高阴极催化剂的活性和碳载体的耐腐蚀性。通过表面活性剂辅助溶剂热法制备了结构明确,氧还原反应(ORR)性能增强的八面体PtNi / CNT催化剂。其质量活性和比活性分别达到市售Pt / C催化剂的5.5和8.5倍,经耐久性测试后其稳定性也更高。另外,在阴极中使用八面体PtNi / CNT催化剂制造的膜电极组件(MEA)在高电势下显示出极好的耐久性,并且其最大功率密度和在600mA cm〜(Δ2)下的电池电压的衰减为。分别只有4.8%和3.6%,远低于商业Pt / C制备的对照。这些结果表明,具有石墨结构的碳材料在制备八面体催化剂中显示出实际的应用潜力。这些碳负载的八面体催化剂有望在材料和制备工艺得到进一步改进后应用于PEMFC阴极。

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