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首页> 外文期刊>Science Advances >Two orders of magnitude enhancement in oxygen evolution reactivity on amorphous Ba0.5Sr0.5Co0.8Fe0.2O3?δ nanofilms with tunable oxidation state
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Two orders of magnitude enhancement in oxygen evolution reactivity on amorphous Ba0.5Sr0.5Co0.8Fe0.2O3?δ nanofilms with tunable oxidation state

机译:非晶态Ba 0.5 Sr 0.5 Co 0.8 Fe 0.2 O 上的析氧反应性提高了两个数量级可调氧化态的> 3?δ纳米膜

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Perovskite oxides exhibit potential for use as electrocatalysts in the oxygen evolution reaction (OER). However, their low specific surface area is the main obstacle to realizing a high mass-specific activity that is required to be competitive against the state-of-the-art precious metal–based catalysts. We report the enhanced performance of Ba0.5Sr0.5Co0.8Fe0.2O3?δ (BSCF) for the OER with intrinsic activity that is significantly higher than that of the benchmark IrO2, and this result was achieved via fabrication of an amorphous BSCF nanofilm on a surface-oxidized nickel substrate by magnetron sputtering. The surface nickel oxide layer of the Ni substrate and the thickness of the BSCF film were further used to tune the intrinsic OER activity and stability of the BSCF catalyst by optimizing the electronic configuration of the transition metal cations in BSCF via the interaction between the nanofilm and the surface nickel oxide, which enables up to 315-fold enhanced mass-specific activity compared to the crystalline BSCF bulk phase. Moreover, the amorphous BSCF–Ni foam anode coupled with the Pt–Ni foam cathode demonstrated an attractive small overpotential of 0.34 V at 10 mA cm?2 for water electrolysis, with a BSCF loading as low as 154.8 μg cm?2.
机译:钙钛矿氧化物显示出在氧气析出反应(OER)中用作电催化剂的潜力。但是,它们的低比表面积是实现高质量比活性的主要障碍,而高质量比活性要求与最新的贵金属基催化剂竞争。我们报告了Ba 0.5 Sr 0.5 Co 0.8 Fe 0.2 O 3?δ< / sub>(BSCF)用于OER,其固有活性显着高于基准IrO 2 ,并且此结果是通过在表面氧化的镍基板上制备非晶BSCF纳米膜来实现的通过磁控溅射。 Ni衬底的表面氧化镍层和BSCF膜的厚度还被用来通过优化BSCF中过渡金属阳离子的电子构型来优化BSCF催化剂的固有OER活性和稳定性,方法是通过纳米膜和纳米膜之间的相互作用。表面的氧化镍,与结晶的BSCF本体相相比,可提高315倍的质量比活性。此外,无定形BSCF-Ni泡沫阳极与Pt-Ni泡沫阴极结合后,在10 mA cm ?2 的水电解条件下显示出0.34 V的诱人小过电位,而BSCF的负载低至154.8 μgcm ?2

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