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首页> 外文期刊>ACS nano >Site-selective deposition of twinned platinum nanoparticles on TiSi _2 nanonets by atomic layer deposition and their oxygen reduction activities
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Site-selective deposition of twinned platinum nanoparticles on TiSi _2 nanonets by atomic layer deposition and their oxygen reduction activities

机译:孪晶铂纳米粒子通过原子层沉积在TiSi _2纳米网上的定点沉积及其氧还原活性

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摘要

For many electrochemical reactions such as oxygen reduction, catalysts are of critical importance, as they are often necessary to reduce reaction overpotentials. To fulfill the promises held by catalysts, a well-defined charge transport pathway is indispensable. Presently, porous carbon is most commonly used for this purpose, the application of which has been recently recognized to be a potential source of concern. To meet this challenge, here we present the development of a catalyst system without the need for carbon. Instead, we focused on a conductive, two-dimensional material of a TiSi_2 nanonet, which is also of high surface area. As a proof-of-concept, we grew Pt nanoparticles onto TiSi_2 by atomic layer deposition. Surprisingly, the growth exhibited a unique selectivity, with Pt deposited only on the top/bottom surfaces of the nanonets at the nanoscale without mask or patterning. Pt {111} surfaces are preferably exposed as a result of a multiple-twinning effect. The materials showed great promise in catalyzing oxygen reduction reactions, which is one of the key challenges in both fuel cells and metal air batteries.
机译:对于许多电化学反应,例如氧还原,催化剂至关重要,因为它们通常是减少反应超电势所必需的。为了兑现催化剂的承诺,必须要有明确的电荷传输途径。当前,多孔碳最常用于此目的,近来已认识到其应用是潜在的关注来源。为了应对这一挑战,在此我们提出了无需碳的催化剂体系的开发。相反,我们专注于TiSi_2纳米网的导电二维材料,该材料也是高表面积的。作为概念验证,我们通过原子层沉积将Pt纳米颗粒生长到TiSi_2上。令人惊讶地,该生长表现出独特的选择性,Pt仅以纳米级沉积在纳米网的顶/底表面上,而没有掩模或图案。 Pt {111}表面优选由于多重缠绕效应而暴露。该材料在催化氧还原反应中显示出巨大的希望,这是燃料电池和金属空气电池的关键挑战之一。

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