Dense Pt Nanowire Electrocatalyst for Improved Fuel Cell Performance Using a Graphitic Carbon Nitride-Decorated Hierarchical Nanocarbon Support

被引:73
作者
Fang, Baizeng [1 ,2 ]
Daniel, Lius [1 ,2 ]
Bonakdarpour, Arman [1 ,2 ]
Govindarajan, Ruben [1 ,2 ]
Sharman, Jonathan [3 ]
Wilkinson, David P. [1 ,2 ]
机构
[1] Univ British Columbia, Dept Chem & Biol Engn, 2360 East Mall, Vancouver, BC V6T 1Z3, Canada
[2] Univ British Columbia, Clean Energy Res Ctr, 2360 East Mall, Vancouver, BC V6T 1Z3, Canada
[3] Johnson Matthey Technol Ctr, Reading RG4 9NH, Berks, England
关键词
electrochemical stability; fuel cells; graphitic carbon nitride; hierarchical porosity; multimodal porous carbon; oxygen reduction reaction; Pt nanowires; CATALYST SUPPORT; PLATINUM NANOWIRES; ENERGY-CONVERSION; CATHODE CATALYSTS; ANODE CATALYST; MORPHOLOGY; GRAPHENE; GROWTH; SHELL; C3N4;
D O I
10.1002/smll.202102288
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
An innovative strategy is presented to engineer supported-Pt nanowire (NW) electrocatalysts with a high Pt content for the cathode of hydrogen fuel cells. This involves deposition of graphitic carbon nitride (g-CN) onto 3D multimodal porous carbon (MPC) (denoted as g-CN@MPC) and using the g-CN@MPC as an electrocatalyst support. The protective coating of g-CN on the MPC provides good stability for the electrocatalyst support against electrochemical oxidation, and also enhances oxygen adsorption and provides additional active sites for the oxygen reduction reaction. Compared with commercial carbon black Vulcan XC-72R (denoted as VC) support material, the larger hydrophobic surface area of the g-CN@MPC enables the supported high-content Pt NWs to disperse uniformly on the support. In addition, the unique 3D interconnected pore networks facilitate improved mass transport within the g-CN@MPC support material. As a result, the g-CN@MPC-supported high-content Pt catalysts show improved performance with respect to their counterparts, namely, MPC, VC, and g-CN@VC-supported Pt NW catalysts and the conventional Pt nanoparticle (NP) catalyst (i.e., Pt(20 wt%)NPs/VC (Johnson Matthey)) used as the benchmark. More importantly, the g-CN-tailored high-content Pt NW (approximate to 60 wt%) electrocatalyst demonstrates high PEM fuel cell power/performance at a very low cathode catalyst loading (approximate to 0.1 mg(Pt) cm(-2)).
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页数:11
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