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Hierarchically structured catalyst layer for the oxygen reduction reaction fabricated by electrodeposition of platinum on carbon nanotube coated carbon fiber

机译:用于通过电沉积在碳纳米管涂层碳纤维上的铂金属沉积的氧还原反应的分层结构催化剂层

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摘要

The cost-efficient fabrication of cathode catalyst layers with low Pt-loadings and high oxygen reduction reaction (ORR) performances is of prime importance towards the commercialization of low temperature fuel cells. Here, an attempt has been made to fabricate a hierarchically structured cathode catalyst layer consisting of Pt-nanoparticle clusters supported on defective carbon nanotube (CNT) coated carbon fiber (CNTCF). CNTs were grown on carbon fiber (CF) using chemical vapor deposition (CVD), while electrodeposition was employed to deposit Pt-nanoparticle clusters onto the CNTCF. The effect of Ptloading on the oxygen reduction reaction (ORR) performance of the Pt-coated CNTCF (Pt-CNTCF) electrocatalysts was studied by varying the electrodeposition time (t(ed)) between 5 and 30 min, which resulted in a variation of the Pt weight fraction in Pt-CNTCF from almost zero to similar to 0.3. Linear sweep voltammetry using a Pt-CNTCF modified glassy carbon (GC) rotating disc electrode (RDE) was employed to study the ORR performance of the samples. The CNTCF support, due to the defective structure of the CNTs, itself exhibits significant ORR activity with an electron transfer number (n) of similar to 2.6, which leads to a synergistic enhancement of the overall electrocatalytic performance of Pt-CNTCF. For low Pt-loading on the GC (similar to 5 mu g cm(-2)), the contribution of the CNTCF support dominated, while the Pt-nanoclusters governed the ORR performance at higher Pt-loading (> 10 mu g cm(-2)), with n > 3.5. Hence, a very low Pt-loading (similar to 5 mu g cm(-2)) may not be suitable for polymer electrolyte membrane fuel cells as the production of substantial amounts of H2O2 on the catalyst supports may accelerate membrane degradation.
机译:具有低Pt载荷和高氧还原反应(ORR)性能的阴极催化剂层的成本效率制造具有对低温燃料电池商业化的主要重要性。这里,已经尝试制造由支持在缺陷的碳纳米管(CNT)涂覆的碳纤维(CNTCF)上的Pt-纳米粒子簇组成的分层结构化阴极催化剂层。使用化学气相沉积(CVD)在碳纤维(CF)上生长CNT,同时使用电沉积在CNTCF上沉积Pt-纳米颗粒簇。通过改变5至30分钟的电沉积时间(T(Ed))来研究Ptloading对Pt涂覆的CNTCF(PT-CNTCF)电催化剂的氧还原反应(ORR)性能的影响,这导致了变化PT-CNTCF中的Pt重量分数从几乎为零至类似于0.3。采用线性扫描伏安法使用PT-CNTCF改性玻璃(GC)旋转盘电极(RDE)来研究样品的ORR性能。由于CNT的结构有缺陷,因此本身具有与2.6相似的电子转移数(N)表现出显着的ORR活性,这导致PT-CNTCF的整体电催化性能的协同增强。对于GC上的低Pt-Langed(类似于5μgcm(-2)),CNTCF支持的贡献主导地位,而PT-NanoClusters在更高的Pt-loading(>10μgcm(> 10 mu g cm)下定治了ORR性能-2)),n> 3.5。因此,在非常低的Pt-loading(类似于5μgcm(-2))可能不适用于聚合物电解质膜燃料电池,因为在催化剂载体上的大量H 2 O 2的产生可以加速膜降解。

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  • 来源
    《RSC Advances》 |2015年第82期|共10页
  • 作者单位

    Indian Inst Technol Mat Sci Programme Adv Nanoengn Mat Lab Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Mat Sci Programme Adv Nanoengn Mat Lab Kanpur 208016 Uttar Pradesh India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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