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Enhancing the available specific surface area of carbon supports to boost the electroactivity of nanostructured Pt catalysts

机译:增强碳载体的可用比表面积以提高纳米结构Pt催化剂的电分子

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We report increasing improvements in the available specific surface area of the commonly used Vulcan XC 72R and Ketjenblack EC-600JD carbons by simple thermal pre-treatment. The treated Vulcan and Ketjenblack substrates have a specific surface area of 322 and 1631 m~2 g~(-1), respectively, instead of 262 and 1102 m~2 g~(-1) for the as-received materials, which is a 23 and 48% improvement. Subsequently, when used as platinum nanoparticle (3 nm) supports, the electrochemical active surface area is enhanced by factors of 2.2 and 1.2 for treated Vulcan and Ketjenblack carbons, respectively. Furthermore, electrochemical investigations have highlighted a surprisingly improved catalytic activity for the pre-treated Vulcan XC 72R and Ketjenblack EC-600JD supported Pt nanoparticles. In fact, the synthesized nanostructures from the so-called "Bromide Anion Exchange" method exhibit good catalytic activity toward glucose electrooxidation, both in the alkaline medium and the phosphate buffered solution at pH 7.4. More importantly, the present catalysts are four times more active than those in the literature prepared under similar conditions for glucose dehydrogenation at low potential (0.27 V vs. Reversible Hydrogen Electrode). Consequently, these remarkable trends uncovered herein provide ample new strategic routes for the pre-treatment of Vulcan XC 72R and Ketjenblack carbons for widespread uses.
机译:通过简单的热预处理,我们报告常用的Vulcan XC 72R和Ketjenblack EC-600JD碳的可用特定表面区域的提高。处理过的硫磺和Ketjenblack基板的比表面积分别为322和1631m〜2g〜(-1),而不是262和1102 m〜2g〜(-1),用于接收的材料是改善23和48%。随后,当用作铂纳米颗粒(3nm)载体时,通过2.2和1.2的因子分别用于治疗的硫磺和ketjenblack碳的因素增强了电化学活性表面积。此外,电化学研究突出了预处理的硫磺XC 72R和Ketjenblack EC-600JD负载的Pt纳米颗粒的令人惊讶的改善催化活性。实际上,来自所谓的“溴化物阴离子交换”方法的合成纳米结构表现出良好的催化活性朝向碱介质和pH7.4的磷酸盐缓冲溶液中的葡萄糖电氧化。更重要的是,本催化剂的活性比在低电位下的葡萄糖脱氢在类似条件下制备的文献中的四倍(0.27V与可逆氢电极)。因此,本文未发现的这些显着趋势提供了充分的新战略途径,用于预处理沃思XC 72R和Ketjenblack碳的广泛用途。

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    Unwersite de Poitiers UMR CNRS 7285 "Equipe SAMCat" 4 rue Michel Brunei B27 TSA 51106 86073 Poitiers cedex 09 France;

    Unwersite de Poitiers UMR CNRS 7285 "Equipe SAMCat" 4 rue Michel Brunei B27 TSA 51106 86073 Poitiers cedex 09 France;

    Unwersite de Poitiers UMR CNRS 7285 "Equipe SAMCat" 4 rue Michel Brunei B27 TSA 51106 86073 Poitiers cedex 09 France;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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