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Preparation Of Platinum Nanoparticles On Carbon Black With Mixed Binary Surfactants: Characterization And Evaluation As Anode Catalyst For Low-temperature Fuel Cell

机译:混合二元表面活性剂在炭黑上制备铂纳米粒子:表征和评价作为低温燃料电池阳极催化剂

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Platinum nanoparticles supported on Vulcan XC-72R prepared by a surfactant-stabilized colloidal method exhibit excellent properties as an anode catalyst for a low-temperature fuel cell. A Pt/C catalyst prepared with a 10-fold critical micelle concentration of mixed non-ionic surfactants [polyoxyethylene (23) lau-ryl ether + polyoxyethylene (20) sorbitan monolaurate (Brij 35 + Tween 20)] shows the highest catalytic activity and the greatest electrochemical surface-active area among those prepared. The maximum current density of this catalyst is much higher than that of a commercial Pt/C catalyst (E-TEK). Moreover, X-ray diffraction and transmission electron microscopy analyses reveal that Pt/C prepared with Brij 35 + Tween 20 has an average particle size of 2.4 nm with quite a narrow distribution between 2 and 3 nm, which is the smallest among all the catalysts prepared. This is attributed to the formation of more compact micelles. Mixtures of non-ionic and anionic surfactants result in less compact micelles.
机译:通过表面活性剂稳定的胶体方法制备的Vulcan XC-72R上负载的铂纳米颗粒作为低温燃料电池的阳极催化剂具有出色的性能。用10倍临界胶束浓度的混合非离子表面活性剂制备的Pt / C催化剂[聚氧乙烯(23)月桂基醚+聚氧乙烯(20)山梨糖酐单月桂酸酯(Brij 35 + Tween 20)]显示出最高的催化活性,并且在制备的那些中最大的电化学表面活性面积。该催化剂的最大电流密度远高于市售Pt / C催化剂(E-TEK)。此外,X射线衍射和透射电子显微镜分析表明,用Brij 35 + Tween 20制备的Pt / C的平均粒径为2.4 nm,分布范围在2至3 nm之间,这是所有催化剂中最小的准备好了。这归因于更紧密的胶束的形成。非离子和阴离子表面活性剂的混合物导致胶束的致密性降低。

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