首页> 外文会议>International Conference of the Microscopy Society of Thailand >Microscopy Investigation of Platinum Ternary Alloy Catalysts on N-Doped Reduced Graphene Oxide Supporter for Direct Ethanol Fuel Cell (DEFC)
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Microscopy Investigation of Platinum Ternary Alloy Catalysts on N-Doped Reduced Graphene Oxide Supporter for Direct Ethanol Fuel Cell (DEFC)

机译:直接乙醇燃料电池(DEFC)对铂三元合金催化剂对铂三元合金催化剂的显微镜研究

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Platinum (Pt) is widely used as anode catalyst for direct ethanol fuel cell (DEFC) but toxic CO gas was produced in the system. Pt bimetallic catalysts can increase the reaction rate, current density and reduce CO gas production. However, some bimetallic catalysts are still expensive and give the low reaction rate. Trimetallic catalysts on carbon supporter were represented instead due to their better catalytic activities, long life time of operation and higher current density. In this study, we synthesized trimetallic alloy on N-doped reduced graphene oxide (NrGO) catalysts using as DEFC anode. The percentage of metals composition in the synthesized catalysts was varied. NrGO was prepared by Modified Hummers Method, then reduced by annealing under Nitrogen gas atmosphere and N-added by annealing with melamine. The preparation method for trimetallic alloy catalysts on NrGO was NaBH4 reduction. The X-ray diffraction (XRD) patterns displayed their alloy phase of PtMRu (M = Au, Sn) which compose of Pt main structure and NrGO supporter. Scanning Electron Microscopy (SEM) images showed the dispersion of alloy metal particles on NrGO surface. The composition of catalysts could be confirmed by Energy dispersive spectroscopy (EDS) data and the phase of alloy particles were verified by electron diffraction (SAD) patterns. Transmission Electron Microscopy (TEM) images showed the particle size of PtAuRu and PtSnRu in various specific percentage on NrGO. The approximate particle size for 10Pt2Au8Ru = 4.88±1.02 nm, 10Pt5Au5Ru = 58.45±42.16 nm, 10Pt8Au2Ru = 11.05±2.29 nm, 10Pt2Sn8Ru = 3.31±1.44 nm, 10Pt5Sn5Ru = 3.50±0.73 nm and 10Pt8Sn2Ru = 4.09±0.97 nm. Catalytic activity of these materials related to their particle size.
机译:铂(PT)广泛用作直接乙醇燃料电池(DEFC)的阳极催化剂,但在该系统中生产有毒的CO气体。 PT双金属催化剂可以提高反应速率,电流密度和减少CO气体生产。然而,一些双金属催化剂仍然是昂贵的并且给出低反应速率。代替碳载体上的粒状催化剂,而是由于它们更好的催化活性,操作时间长,寿命长度和更高的电流密度。在该研究中,我们使用作为DEFC阳极的N掺杂的石墨烯氧化物(NRGO)催化剂上的三种子合金合成。合成催化剂中金属组合物的百分比变化。 NRGO通过改性的悍马方法制备,然后通过在氮气气氛下退火而减少,通过用三聚氰胺退火进行N-添加。 NRGO上三种合金催化剂的制备方法是NABH4还原。 X射线衍射(XRD)图案显示PTMRU(M = Au,Sn)的合金相,该幂相位为PT主结构和NRGO支撑件。扫描电子显微镜(SEM)图像显示合金金属颗粒对NRGO表面的分散。催化剂的组成可以通过能量分散光谱(EDS)数据来确认,通过电子衍射(难度)图案来验证合金颗粒的相位。透射电子显微镜(TEM)图像在NRGO上以各种特定百分比显示PTAURU和PTSNRU的粒径。近似粒径为10pt2au8Ru = 4.88±1.02nm,10pt5au5ru = 58.45±42.16 nm,10pt8au2ru = 11.05±2.29 nm,10pt2sn8ru = 3.31±1.44nm,10pt5sn5ru = 3.50±0.73nm和10pt8sn2ru = 4.09±0.97nm。这些与其粒径有关的这些材料的催化活性。

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