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具有高指数晶面的自组装树枝状 Pt 纳米结构作为高效且耐用的氧还原电催化剂。

Self-Assembled Dendritic Pt Nanostructure with High-Index Facets as Highly Active and Durable Electrocatalyst for Oxygen Reduction.

机构信息

Center for Nanoparticle Research, Institute for Basic Science (IBS), Seoul, 08826, Republic of Korea.

School of Chemical and Biological Engineering, Seoul National University, Seoul, 08826, Republic of Korea.

出版信息

ChemSusChem. 2017 Aug 10;10(15):3063-3068. doi: 10.1002/cssc.201700852. Epub 2017 Jun 28.

Abstract

The durability issues of Pt catalyst should be resolved for the commercialization of proton exchange membrane fuel cells. Nanocrystal structures with high-index facets have been recently explored to solve the critical durability problem of fuel cell catalysts as Pt catalysts with high-index facets can preserve the ordered surfaces without change of the original structures. However, it is very difficult to develop effective and practical synthetic methods for Pt-based nanostructures with high-index facets. The current study describes a simple one-pot synthesis of self-assembled dendritic Pt nanostructures with electrochemically active and stable high-index facets. Pt nanodendrites exhibited 2 times higher ORR activity and superior durability (only 3.0 % activity loss after 10 000 potential cycles) than a commercial Pt/C. The enhanced catalytic performance was elucidated by the formation of well-organized dendritic structures with plenty of reactive interfaces among 5 nm-sized Pt particles and the coexistence of low- and high-index facets on the particles.

摘要

为了质子交换膜燃料电池的商业化,应解决 Pt 催化剂的耐久性问题。最近已经探索了具有高指数晶面的纳米晶体结构,以解决燃料电池催化剂的关键耐久性问题,因为具有高指数晶面的 Pt 催化剂可以在不改变原始结构的情况下保持有序表面。然而,开发具有高指数晶面的 Pt 基纳米结构的有效和实用的合成方法非常困难。本研究描述了一种简单的一锅法合成具有电化学活性和稳定高指数晶面的自组装枝晶 Pt 纳米结构。Pt 纳米枝晶表现出比商业 Pt/C 高 2 倍的 ORR 活性和优异的耐久性(经过 10000 次电位循环后仅损失 3.0%的活性)。通过在 5nm 尺寸的 Pt 颗粒之间形成具有大量反应界面的组织良好的枝状结构以及颗粒上存在低指数和高指数晶面的共存,阐明了增强的催化性能。

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