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首页> 外文期刊>Nanoscale >2D molybdenum disulphide (2D-MoS2) modified electrodes explored towards the oxygen reduction reaction
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2D molybdenum disulphide (2D-MoS2) modified electrodes explored towards the oxygen reduction reaction

机译:2 d二硫化钼(2 d-mos2)修改对氧还原电极探索反应

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摘要

Two-dimensional molybdenum disulphide nanosheets (2D-MoS2) have proven to be an effective electrocatalyst, with particular attention being focused on their use towards increasing the efficiency of the reactions associated with hydrogen fuel cells. Whilst the majority of research has focused on the Hydrogen Evolution Reaction (HER), herein we explore the use of 2D-MoS2 as a potential electrocatalyst for the much less researched Oxygen Reduction Reaction (ORR). We stray from literature conventions and perform experiments in 0.1 M H2SO4 acidic electrolyte for the first time, evaluating the electrochemical performance of the ORR with 2D-MoS2 electrically wired/immobilised upon several carbon based electrodes (namely; Boron Doped Diamond (BDD), Edge Plane Pyrolytic Graphite (EPPG), Glassy Carbon (GC) and Screen-Printed Electrodes (SPE)) whilst exploring a range of 2D-MoS2 coverages/masses. Consequently, the findings of this study are highly applicable to real world fuel cell applications. We show that significant improvements in ORR activity can be achieved through the careful selection of the underlying/supporting carbon materials that electrically wire the 2D-MoS2 and utilisation of an optimal mass of 2D-MoS2. The ORR onset is observed to be reduced to ca. +0.10 V for EPPG, GC and SPEs at 2D-MoS2 (1524 ng cm(-2) modification), which is far closer to Pt at +0.46 V compared to bare/unmodified EPPG, GC and SPE counterparts. This report is the first to demonstrate such beneficial electrochemical responses in acidic conditions using a 2D-MoS2 based electrocatalyst material on a carbon-based substrate (SPEs in this case). Investigation of the beneficial reaction mechanism reveals the ORR to occur via a 4 electron process in specific conditions; elsewhere a 2 electron process is observed. This work offers valuable insights for those wishing to design, fabricate and/or electrochemically test 2D-nanosheet materials towards the ORR.
机译:二维二硫化钼nanosheets(2 d-mos2)已被证实是有效的electrocatalyst,特别注意专注于自己的使用增加相关的反应效率氢燃料电池。研究集中在氢进化反应(她的),在此我们探索的使用2作为一个潜在的electrocatalyst d-mos2更少的氧气还原反应进行了研究(ORR)。执行0.1硫酸酸性实验电解液第一次评估奥尔的电化学性能2 d-mos2电连接/固定几个碳基电极(即;掺杂金刚石(BDD),边缘平面热解石墨(EPPG)、玻璃碳(GC)丝网印刷电极(SPE))而探索一系列2 d-mos2保险/质量。因此,本研究的结果非常适用于现实世界的燃料电池应用程序。奥尔的改善活动通过仔细选择底层/支持碳材料电连接2 d-mos2和利用一个最优的质量2 d-mos2。观察到减少为EPPG ca。+ 0.10 V,GC和spe 2 d-mos2 (1524 ng厘米(2)修改),这是更接近Pt + 0.46V裸/修改的EPPG相比,GC和SPE同行。证明这种有益的电化学使用2 d-mos2反应在酸性条件下基于electrocatalyst碳基材料衬底(spe在这种情况下)。有益的反应机理揭示了奥尔通过一个4电子的过程发生在特定的条件;观察到。那些希望设计,制造和/或电化学测试2 d-nanosheet材料向奥尔。

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