首页> 外文期刊>Electrochimica Acta >Spatially resolved quantification of ruthenium oxide phase in a direct methanol fuel cell operated under normal and fuel starved conditions
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Spatially resolved quantification of ruthenium oxide phase in a direct methanol fuel cell operated under normal and fuel starved conditions

机译:在正常和燃料饥饿条件下操作的直接甲醇燃料电池中的空间氧化钌相的定量

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In operando Ru K edge X-ray absorption spectra were recorded at various cell voltages from specific regions of a direct methanol fuel cell (DMFC), such as methanol inlet, outlet and middle regions. From the linear combination fitting analysis, it was found that 50% of the Ru in the pristine Pt/Ru catalyst is in an oxidized form that matches with hydrated ruthenium oxide (RuO2 center dot xH(2)O). During the DMFC cycling, fraction of this oxide phase gets reduced and forms metallic Ru. Furthermore, it is observed that under normal DMFC operation at various cell voltages relatively a higher amount of RuO2 phase is present at the methanol inlet compared to the methanol outlet. This difference in the amount of RuO2 phase observed translates into inhomogeneous distribution of potential/current within a single cell. The amount of RuO2 phase increased further when the DMFC was subjected to fuel starvation conditions (very high anode potential). Again compared to the methanol outlet region, a higher amount of RuO2 phase was found at the methanol inlet. As RuO2 is more prone to dissolution compared to metallic Ru, it can be concluded that methanol inlet region is more prone to Ru dissolution compared to methanol outlet region. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在Operando Ru K中,在来自直接甲醇燃料电池(DMFC)的特定区域的各种电池电压下记录边缘X射线吸收光谱,例如甲醇入口,出口和中间区域。从线性组合拟合分析中,发现原始Pt / Ru催化剂中50%的Ru是氧化形式,其与水合钌(RuO2中心点XH(2)O)匹配。在DMFC循环期间,该氧化物相的级分降低并形成金属Ru。此外,观察到,与甲醇出口相比,在各个电池电压下在各种电池电压下的正常DMFC操作下存在较高量的RuO2相。 ruo2相的这种差异观察到在单个细胞内的电位/电流的不均匀分布中。当DMFC经受燃料饥饿条件(非常高的阳极电位)时,RuO2相的量进一步增加。再次与甲醇出口区域相比,在甲醇入口处发现较高量的RuO 2相。与金属Ru相比,RuO2更容易溶解,可以得出结论,与甲醇出口区域相比,甲醇入口区域更容易发生腐蚀。 (c)2018年elestvier有限公司保留所有权利。

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