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Nanoparticle catalysts with high energy surfaces and enhanced activity synthesized by electrochemical method

机译:电化学法合成具有高能表面和增强活性的纳米颗粒催化剂

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摘要

Electrochemical shape-controlled synthesis of metal nanocrystal (NC) catalysts bounded by high-index facets with high surface energy was achieved by developing a square-wave potential route. Tetrahexahedral Pt NCs with 24 {hk0} facets, concave hexoctahedral Pt NCs with 48 {hkl} facets, and multiple twinned Pt nanorods with {hk0} facets were produced. The method was employed also to synthesize successfully trapezohedral Pd NCs with 24 {hkk} facets, and concave hexoctahedral Pd NCs with 48 {hkl} facets. It has been tested that, thanks to the high-index facets with high density of atomic steps and dangling bonds, the tetrahexahedral Pt NCs exhibit much enhanced catalytic activity for equivalent Pt surface areas for electrooxidation of small organic fuels such as ethanol. These results demonstrate that the developed square-wave potential method has surmounted the limit of conventional chemical methods that could synthesize merely metal nanocrystals with low surface energy, and opened a new prospect avenue in shape-controlled synthesis of nanoparticle catalysts with high surface energy and enhanced activity.
机译:通过开发方波电势路径,实现了以高表面能的高折射率面为边界的金属纳米晶催化剂的电化学形状控制合成。产生了具有24个{hk0}刻面的四面体Pt NC,具有48个{hkl}刻面的凹面六面体Pt NC和多个具有{hk0}刻面的孪生Pt纳米棒。该方法还用于成功地合成具有24个{hkk}刻面的梯形Pd NCs和具有48个{hkl}刻面的凹面六面体Pd NCs。经过测试,由于具有高原子级和悬挂键的高折射率刻面,四六面体Pt NCs对等效Pt表面积的催化活性大大增强,可用于乙醇等小型有机燃料的电氧化。这些结果表明,所开发的方波势方法超越了仅能合成具有低表面能的金属纳米晶体的常规化学方法的极限,为高表面能和增强型纳米催化剂的形状控制合成开辟了新的前景。活动。

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