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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Temperature dependence of oxygen reduction activity at carbon-supported PtXCo (X=1, 2, and 3) alloy catalysts prepared by the nanocapsule method
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Temperature dependence of oxygen reduction activity at carbon-supported PtXCo (X=1, 2, and 3) alloy catalysts prepared by the nanocapsule method

机译:纳米胶囊法制备的碳载PtXCo(X = 1、2和3)合金催化剂上氧还原活性的温度依赖性

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Monodispersed PtXCo (atomic ratio, X = 1, 2, and 3) alloy nanoparticles supported on carbon black (CB, 50 wt % metal loading) were prepared by the nanocapsule method. The average particle diameters (d) measured by scanning transmission electron microscopy ranged from 1.9 (X = 3) to 2.4 nm (X = 1). The alloy composition was found to be well-controlled to the projected value among the supported particles. Oxygen reduction reaction (ORR) activity and H2O2 yield at Nafion-coated PtXCo/CB catalysts were examined in O-2-saturated 0.1 M HClO4 solution at 30 to 100 degrees C by using the multichannel flow double electrode (M-CFDE) method. In the temperature range from 30 to 80 degrees C, the value of apparent rate constant k(app) (per real active surface area) for the ORR at X = 3 (d = 1.9 nm) was the largest, by a factor of 2.2 compared with that of Pt/CB (50 wt % Pt, d = 2.6 nm), i.e., the mass activity of Pt was expected to be enhanced by 3.3 times due to an advantage of higher specific surface area. The Pt3Co/CB also exhibited the highest stability for an immersion test in air-saturated H2SO4 at 70 degrees C.
机译:通过纳米胶囊法制备了负载在炭黑(CB,50 wt%金属负载)上的单分散PtXCo(原子比,X = 1、2和3)合金纳米颗粒。通过扫描透射电子显微镜测量的平均粒径(d)为1.9(X = 3)至2.4nm(X = 1)。发现该合金组成被很好地控制在负载颗粒之间的投影值。使用多通道流动双电极(M-CFDE)方法,在30至100摄氏度的O-2-饱和的0.1 M HClO4溶液中,研究了Nafion涂层的PtXCo / CB催化剂的氧还原反应(ORR)活性和H2O2产率。在30到80摄氏度的温度范围内,OR = X = 3(d = 1.9 nm)时的表观速率常数k(app)(每个实际有效表面积)的值最大,为2.2倍与Pt / CB(50wt%的Pt,d = 2.6nm)相比,即,由于较高的比表面积的优点,预期Pt的质量活性将提高3.3倍。 Pt3Co / CB在70°C的空气饱和H2SO4中的浸入测试中也表现出最高的稳定性。

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