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Pt skin on Pd-Co-Zn/C ternary nanoparticles with enhanced Pt efficiency toward ORR

机译:Pt皮肤Pd-Co-Zn / C三元纳米颗粒增强对奥尔Pt效率

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Exploring highly active, stable and relatively low-cost nanomaterials for the oxygen reduction reaction (ORR) is of vital importance for the commercialization of proton exchange membrane fuel cells (PEMFCs). Herein, a highly active, durable, carbon supported, and monolayer Pt coated Pd-Co-Zn nanoparticle is synthesized via a simple impregnation-reduction method, followed by spontaneous displacement of Pt. By tuning the atomic ratios, we obtain the composition-activity volcano curve for the Pd-Co-Zn nanoparticles and determined that Pd : Co : Zn = 8 : 1 : 1 is the optimal composition. Compared with pure Pd/C, the Pd8CoZn/C nanoparticles show a substantial enhancement in both the catalytic activity and the durability toward the ORR. Moreover, the durability and activity are further enhanced by forming a Pt skin on Pd8CoZn/C nanocatalysts. Interestingly, after 10 000 potential cycles in N-2-saturated 0.1 M HClO4 solution, Pd8CoZn@Pt/C shows improved mass activity (2.62 A mg(Pt)(-1)) and specific activity (4.76 A m(total)(-2) ), which are about 1.4 and 4.4 times higher than the initial values, and 37.4 and 5.5 times higher than those of Pt/C catalysts, respectively. After accelerated stability testing in O-2-saturated 0.1 M HClO4 solution for 30 000 potential cycles, the half-wave potential negatively shifts about 6 mV. The results show that the Pt skin plays an important role in enhancing the activity as well as preventing degradation.
机译:探索高度活跃,且相对稳定低成本的纳米材料的氧气减少反应(ORR)是至关重要的质子交换膜的商业化燃料电池(质子交换膜燃料电池)。耐用,碳支持,单层Pt涂布Pd-Co-Zn纳米颗粒合成通过简单impregnation-reduction方法,紧随其后通过调优的自发的位移Pt。原子比率,我们获得作文活动火山Pd-Co-Zn纳米颗粒和曲线确定Pd公司:锌= 8:1:1最优组合。Pd8CoZn / C纳米颗粒显示很大在催化活性和增强向奥尔耐久性。进一步提高了耐用性和活动形成Pd8CoZn / C nanocatalysts Pt的皮肤。有趣的是,在000潜在的周期N-2-saturated 0.1米高氯酸溶液,Pd8CoZn@Pt / C表明改进的质量活动(2.62毫克(Pt) (1))和具体活动(4.76米(总)(2)),的1.4和4.4倍呢初始值,37.4和5.5倍分别比Pt / C催化剂。在O-2-saturated加速稳定性测试0.1米高氯酸溶液30 000潜在的周期,半波的潜在负面变化约6mV。重要的作用在增强活动为防止退化。

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