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具有介孔壳层的分级纳米结构空心球形碳作为质子交换膜燃料电池中独特的阴极催化剂载体

Hierarchical nanostructured hollow spherical carbon with mesoporous shell as a unique cathode catalyst support in proton exchange membrane fuel cell.

作者信息

Fang Baizeng, Kim Jung Ho, Kim Minsik, Kim Minwoo, Yu Jong-Sung

机构信息

Department of Advanced Materials Chemistry, Korea University, 208 Seochang, Jochiwon, ChungNam, 339-700, Republic of Korea.

出版信息

Phys Chem Chem Phys. 2009 Mar 7;11(9):1380-7. doi: 10.1039/b816629c. Epub 2009 Jan 15.

Abstract

Hierarchical nanostructured spherical carbon with hollow macroporous core in combination with mesoporous shell has been explored to support Pt cathode catalyst with high metal loading in proton exchange membrane fuel cell (PEMFC). The hollow core-mesoporous shell carbon (HCMSC) has unique structural characteristics such as large specific surface area and mesoporous volume, ensuring uniform dispersion of the supported high loading (60 wt%) Pt nanoparticles with small particle size, and well-developed three-dimensionally interconnected hierarchical porosity network, facilitating fast mass transport. The HCMSC-supported Pt(60 wt%) cathode catalyst has demonstrated markedly enhanced catalytic activity toward oxygen reduction and greatly improved PEMFC polarization performance compared with carbon black Vulcan XC-72 (VC)-supported ones. Furthermore, the HCMSC-supported Pt(40 wt%) or Pt(60 wt%) outperforms the HCMSC-supported Pt(20 wt%) even at a low catalyst loading of 0.2 mg Pt cm(-2) in the cathode, which is completely different from the VC-supported Pt catalysts. The capability of supporting high loading Pt is supposed to accelerate the commercialization of PEMFC due to the anticipated significant reduction in the amount of catalyst support required, diffusion layer thickness and fabricating cost of the supported Pt catalyst electrode.

摘要

具有中空大孔核与介孔壳层的分级纳米结构球形碳已被用于在质子交换膜燃料电池(PEMFC)中负载高金属含量的Pt阴极催化剂。中空核-介孔壳层碳(HCMSC)具有独特的结构特性,如大比表面积和介孔体积,确保了负载的高含量(60 wt%)小粒径Pt纳米颗粒的均匀分散,以及发达的三维互连分级孔隙网络,有利于快速传质。与炭黑Vulcan XC-72(VC)负载的催化剂相比,HCMSC负载的Pt(60 wt%)阴极催化剂对氧还原表现出显著增强的催化活性,并极大地改善了PEMFC的极化性能。此外,即使在阴极催化剂负载量低至0.2 mg Pt cm(-2)时,HCMSC负载的Pt(40 wt%)或Pt(60 wt%)也优于HCMSC负载的Pt(20 wt%),这与VC负载的Pt催化剂完全不同。由于预计所需催化剂载体的量、扩散层厚度和负载Pt催化剂电极的制造成本将显著降低,支持高负载Pt的能力有望加速PEMFC的商业化。

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