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Nano-size boron carbide intercalated graphene as high performance catalyst supports and electrodes for PEM fuel cells

机译:纳米级碳化硼插层石墨烯作为PEM燃料电池的高性能催化剂载体和电极

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The low utilization and stability of noble-metal catalysts is always a big barrier to commercialize proton exchange membrane (PEM) fuel cells. Here we report a positive progress on stabilizing the catalyst by modulating 2D graphene as an advanced support of Pt nanoparticles, where the interlayer of graphene is near perfectly intercalated by nano-B4C ceramics. The strong restriction effect of nano-ceramics in graphene interlayers, can greatly improves the usage and electrochemical stability of Pt catalysts. As results, our new graphene/B4C supported Pt catalyst (Pt-RGO/B4C) shows greatly enhanced electrochemical surface area (121 m(2) g(-1)) and mass activity (185 A g(-1) Pt) towards oxygen reduction reaction (ORR), which is remarkably higher than the reduced graphene oxide (RGO) supported Pt (Pt/RGO) catalyst and the commercial Pt/C catalyst. In addition, the Pt-RGO/B4C electrode also possesses higher fuel cell performance than the Pt/RGO electrode. Especially, after the electrochemical acceleration test for 10000 cycles, our new catalyst presents an excellent stability, even retains 45.2% initial electrochemical surface area, while the Pt/RGO and Pt/C are only 29.7 and 23.4%, respectively. These indicate our unique catalyst is promising to allow the PEM fuel cell have high ORR activity and stability. (C) 2016 Elsevier Ltd. All rights reserved.
机译:贵金属催化剂的低利用率和稳定性一直是商业化质子交换膜(PEM)燃料电池的一大障碍。在这里,我们报告了通过调节二维石墨烯作为Pt纳米颗粒的高级载体来稳定催化剂的积极进展,其中石墨烯的中间层几乎被纳米B4C陶瓷完美嵌入。纳米陶瓷对石墨烯中间层的强限制作用,可以大大提高铂催化剂的使用和电化学稳定性。结果,我们的新石墨烯/ B4C负载的Pt催化剂(Pt-RGO / B4C)显示出大大提高的电化学表面积(121 m(2)g(-1))和质量活性(185 A g(-1)Pt)氧还原反应(ORR),明显高于还原型氧化石墨烯(RGO)负载的Pt(Pt / RGO)催化剂和市售Pt / C催化剂。此外,Pt-RGO / B4C电极还具有比Pt / RGO电极更高的燃料电池性能。特别是在经过10000次循环的电化学加速测试后,我们的新型催化剂具有出色的稳定性,甚至可以保留45.2%的初始电化学表面积,而Pt / RGO和Pt / C分别仅为29.7%和23.4%。这些表明我们独特的催化剂有望使PEM燃料电池具有高ORR活性和稳定性。 (C)2016 Elsevier Ltd.保留所有权利。

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