首页> 外文期刊>ACS applied materials & interfaces >Formation of a Pt-Decorated Au Nanoparticle Monolayer Floating on an Ionic Liquid by the Ionic Liquid/Metal Sputtering Method and Tunable Electrocatalytic Activities of the Resulting Monolayer
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Formation of a Pt-Decorated Au Nanoparticle Monolayer Floating on an Ionic Liquid by the Ionic Liquid/Metal Sputtering Method and Tunable Electrocatalytic Activities of the Resulting Monolayer

机译:离子液体/金属溅射法在离子液体上漂浮的Pt装饰的Au纳米粒子单层的形成以及所得单层的可调节电催化活性

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A novel strategy to prepare a bimetallic Au-Pt particle film was developed through sequential sputter deposition of Au and Pt on a room temperature ionic liquid (RTIL). Au sputter deposition onto an RTIL containing hydroxyl-functionalized cations produced a monolayer of Au particles 4.2 nm in size on the liquid surface. Subsequent Pt sputtering onto the original Au particle monolayer floating on the RTIL enabled decoration of individual Au particles with Pt metals, resulting in the formation of a bimetallic Au-Pt particle monolayer with a Pt-enriched particle surface. The particle size slightly increased to 4.8 nm with Pt deposition for 120 min. The shell layer of a bimetallic particle was composed of Au-Pt alloy, the composition of which was tunable by controlling the Pt sputter deposition time. The electrochemical surface area (ECSA) was determined by cyclic voltammetry of bimetallic Au-Pt particle monolayers transferred onto HOPG electrodes by a horizontal liftoff method. The Pt surface coverage, determined by ECSAs of Au and Pt, increased from 0 to 56 mol % with elapse of the Pt sputter deposition time up to 120 min. Thus-obtained Au-Pt particle films exhibited electrocatalytic activity for methanol oxidation reaction (MOR) superior to the activities of pure Au or Pt particles. Volcano-type dependence was observed between the MOR activity and Pt surface coverage on the particles. Maximum activity was obtained for Au-Pt particles with a Pt coverage of 49 mol %, being ca. 120 times higher than that of pure Pt particles. This method enables direct decoration of metal particles with different noble metal atoms, providing a novel strategy to develop highly efficient multinary particle catalysts.
机译:通过在室温离子液体(RTIL)上顺序溅射Au和Pt沉积,开发了一种制备双金属Au-Pt颗粒薄膜的新策略。 Au溅射沉积到包含羟基官能化阳离子的RTIL上,在液体表面上形成了尺寸为4.2 nm的Au颗粒单层。随后将Pt溅射到漂浮在RTIL上的原始Au颗粒单层上,就可以用Pt金属装饰单个Au颗粒,从而形成具有富Pt颗粒表面的双金属Au-Pt颗粒单层。在120分钟内沉积Pt时,粒径略微增加到4.8 nm。双金属颗粒的壳层由Au-Pt合金组成,其成分可通过控制Pt溅射沉积时间来调节。电化学表面积(ECSA)通过循环伏安法通过水平剥离法将双金属Au-Pt颗粒单层转移到HOPG电极上来确定。通过Au和Pt的ECSA确定的Pt表面覆盖度随着Pt溅射沉积时间的延长(从120分钟)增加到0到56 mol%。如此获得的Au-Pt颗粒膜表现出优于纯Au或Pt颗粒的活性的对甲醇氧化反应(MOR)的电催化活性。在MOR活动和颗粒上的Pt表面覆盖之间观察到火山类型的依赖性。对于具有49 mol%的Pt覆盖率的Au-Pt颗粒,获得了最大的活性。比纯Pt颗粒高120倍。该方法能够直接装饰具有不同贵金属原子的金属颗粒,从而为开发高效的多元颗粒催化剂提供了一种新颖的策略。

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