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通过控制铂镍纳米晶体的形状和组成来开发高活性氧还原催化剂。

Development of Highly-Active Catalysts toward Oxygen Reduction by Controlling the Shape and Composition of Pt-Ni Nanocrystals.

作者信息

Xie Minghao, Shen Min, Chen Ruhui, Xia Younan

机构信息

School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.

The Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, Georgia 30332, United States.

出版信息

ACS Appl Mater Interfaces. 2023 Oct 25;15(42):49146-49153. doi: 10.1021/acsami.3c10514. Epub 2023 Oct 13.

Abstract

Electrocatalysts comprised of Pt-Ni alloy nanocrystals have garnered substantial attention due to their outstanding performance in catalyzing the oxygen reduction reaction (ORR). Herein, we present the synthesis of Pt-Ni nanocrystals with a variety of controlled shapes and compositions in an effort to investigate the impact of the Ni content on the formation of {111} facets and thereby the ORR activity. By completely excluding O from the reaction system, we could prevent the generation of Ni(OH) on the surface of the nanocrystals and thereby achieve a linear relationship between the atomic ratio of Pt to Ni in the nanocrystals and the feeding ratio of the precursors. The atomic ratio of Pt to Ni in the Pt-Ni nanocrystals was tunable within the range of 1.2-7.2, while their average sizes were kept around 9 nm in terms of edge length. In addition, a quantitative correlation between the area ratio of {111} to {100} facets and the feeding ratio of Pt(II) to Ni(II) was obtained by adjusting the mole fraction of the Ni(II) precursor in the reaction mixture. For the catalysts comprising octahedral nanocrystals, their specific ORR activities exhibited a positive correlation with the Pt/Ni atomic ratio. After the accelerated durability test, both specific and mass activity displayed a volcano-type trend with a peak value at a Pt/Ni atomic ratio of 1.6.

摘要

由铂镍合金纳米晶体组成的电催化剂因其在催化氧还原反应(ORR)方面的出色性能而备受关注。在此,我们展示了具有各种可控形状和组成的铂镍纳米晶体的合成,旨在研究镍含量对{111}面形成的影响,进而研究其对ORR活性的影响。通过在反应体系中完全排除氧,我们可以防止在纳米晶体表面生成Ni(OH),从而在纳米晶体中铂与镍的原子比和前驱体的进料比之间实现线性关系。铂镍纳米晶体中铂与镍的原子比在1.2 - 7.2范围内可调,而其平均尺寸以边长计保持在9 nm左右。此外,通过调整反应混合物中Ni(II)前驱体的摩尔分数,获得了{111}面与{100}面的面积比与Pt(II)与Ni(II)进料比之间的定量相关性。对于由八面体纳米晶体组成 的催化剂,其特定ORR活性与Pt/Ni原子比呈正相关。经过加速耐久性测试后,比活性和质量活性均呈现出火山型趋势,在Pt/Ni原子比为1.6时达到峰值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8c3/10614184/f88fe9071398/am3c10514_0001.jpg

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