期刊
INTERNATIONAL JOURNAL OF ENERGY RESEARCH
卷 45, 期 9, 页码 12968-12979出版社
WILEY
DOI: 10.1002/er.6627
关键词
centrifugal electrospinning method; electrocatalyst; platinum nanowires; polyvinyl pyrrolidone; proton exchange membrane fuel cell
资金
- Ministry of Science and Technology, Taiwan [105-2221-E-036 -016, 108-2221-E-036-003]
The centrifugal electrospinning method is utilized to fabricate Pt nanowires with good morphology and excellent performance in PEMFC. By optimizing system parameters, the production rate of nanowires is significantly increased, showing better comparability and durability than traditional methods.
The centrifugal electrospinning method is employed to fabricate platinum (Pt) nanowires and its application for proton exchange membrane fuel cell (PEMFC) is evaluated. The nanowires are produced from a polymer solution containing hexachloroplatinic acid hydrate as Pt precursor and polyvinyl pyrrolidone (PVP). The effects of system parameters on the morphology of Pt nanowires are studied including the PVP concentration, rotation speed of spinneret, and applied electric field. The electrochemically active surface area (ESA) of the Pt nanowires is characterized by cyclic voltammetry tests. The produced Pt nanowires are also used as electrocatalysts in the cathode of PEMFC and the cell performance is tested. Results show the centrifugal electrospinning method can successfully produce Pt nanowires with mean diameter of 54 +/- 14 nm and ESA of 5.64m(2)g(-1), which are comparable to those of traditional electrospun Pt nanowires. The production rate of Pt nanowires can be improved greatly in comparison with the conventional electrospinning technique. It is also found that by the accelerated degradation tests, Pt nanowires demonstrate better durability than commercial Pt/C and the employment of Pt nanowires as electrocatalysts mixed with Pt/C can enhance the fuel cell performance. The present results reveal the centrifugal electrospinning method is an efficient approach to fabricate Pt nanowires for the application in PEMFCs. Novelty statement A centrifugal electrospinning device was designed to fabricate Pt nanowires successfully with good morphology. The production rate of Pt nanowires is enhanced greatly in comparison with the conventional electrospinning method. Electrocatalysts composed of the produced Pt nanowires and Pt/C is found to be able to improve the performance of PEMFC.
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