首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >A simple eco-friendly solution phase reduction method for the synthesis of polyhedra platinum nanoparticles with high catalytic activity for methanol electrooxidation
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A simple eco-friendly solution phase reduction method for the synthesis of polyhedra platinum nanoparticles with high catalytic activity for methanol electrooxidation

机译:一种简单的环保溶液相还原方法,用于合成对甲醇具有高催化活性的多面体铂纳米颗粒

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摘要

The conventional hydrogen gas reduction method for preparation of platinum nanoparticles is to bubble H2 gas into solution with a pre-existing platinum precursor. In this work, instead of bubbling hydrogen gas into Pt precursor solution, we reverse the addition sequence by quickly injecting the Pt precursor into a solution saturated with hydrogen gas. Colloidal Pt nanoparticles thus synthesized are polyhedra of different shapes. Carbon-supported Pt catalysts (Pt-1/C) are prepared by subsequently harvesting the Pt colloids and testing for the methanol oxidation reaction at room temperature. Transmission electron microscope (TEM) images are used to observe the Pt nanoparticle morphology and UV-vis spectra are used to monitor Pt precursor reduction with time. The Pt loadings are confirmed by thermogravimetric analysis. Interestingly, CO stripping cyclic voltammetry of Pt-1/C displayed double oxidation peaks with comparable intensities, one of which is 120 mV more negative than that of a typical CO oxidation peak on Pt. Besides the improved CO tolerance, Pt-1/C easily surpasses the mass activity of Pt/C from E-TEK by 55%. The method reported in this work presents a simple and eco-friendly route for producing carbon-supported platinum electrocatalysts with enhanced CO tolerance and mass activity.
机译:用于制备铂纳米颗粒的常规氢气还原方法是将氢气与预先存在的铂前体一起鼓入溶液中。在这项工作中,我们不是将氢气鼓泡到Pt前驱物溶液中,而是通过将Pt前驱物快速注入到充满氢气的溶液中来颠倒添加顺序。由此合成的胶体Pt纳米颗粒是不同形状的多面体。通过随后收集Pt胶体并在室温下测试甲醇氧化反应来制备碳载Pt催化剂(Pt-1 / C)。透射电子显微镜(TEM)图像用于观察Pt纳米颗粒的形态,而UV-vis光谱用于监视Pt前体随时间的减少。通过热重分析确认Pt负载。有趣的是,Pt-1 / C的CO汽提循环伏安法显示出具有可比强度的双氧化峰,其中一个比Pt上典型的CO氧化峰负120 mV。除了改善的CO耐受性外,Pt-1 / C还很容易超过E-TEK的Pt / C的质量活性55%。这项工作中报道的方法为生产具有增强的CO耐受性和质量活性的碳载铂电催化剂提供了一种简单且环保的方法。

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