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Combining Transition Metals - An approach towards High-performing Coking Tolerant Solid Oxide Fuel Cell Anodes

机译:结合过渡金属 - 一种高性能焦化固体氧化物燃料电池阳极的方法

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Bimetallic combinations of the three transition metals, Ni, Co, and Fe, were infiltrated alongside gadolinium doped ceria (CGO), into a strontium titanate backbone. The infiltrated cells were analyzed using electrochemical impedance spectroscopy in the temperature range 650°-850°C and in the atmospheres: 4% H_2O/H_2, 50% H_2O/H_2, 80% H_2O/H_2, and 50% CO_2/CO. In addition, in situ synchronous Raman spectroscopy and EIS experiments were performed to explore the coking tolerance of the bimetallic infiltrations. The electrocatalytic activity of the bimetals were similar to the single metals with electrode area specific resistances 0.35 Ωcm~2, 0.28 Ωcm~2, and 1.32 of Ωcm~2 for the Co-Fe-CGO, Ni-Co-CGO, and Ni-Fe-CGO infiltrated cells, respectively, at 750°C in 50% H_2O/H_2. The results obtained from the synchronous in situ Raman - EIS experiments further indicates an improved coking resistance for combined transition metal infiltrations.
机译:三种过渡金属,Ni,Co和Fe的双金属组合与钆掺杂的二氧化铈(CGO)一起渗透到钛酸锶骨架中。在温度范围内的温度范围内和大气中的电化学阻抗光谱和大气中的渗透细胞:4%H_2O / H_2,50%H_2O / H_2,80%H_2O / H_2和50%CO_2 / CO。此外,在原位同步拉曼光谱和EIS实验中进行以探索双金属渗透的焦化容差。双金属的电催化活性与电极面积特异性电阻的单个金属相似,电极面积为0.35Ωcm〜2,0.28Ωcm〜2,和1.32的Co-Fe-cgo,Ni-Co-cgo和Ni-的ωcm〜2 Fe-Cgo渗透细胞分别在750℃下在50%H_2O / H_2中。从同步原位拉曼 - EIS实验中获得的结果进一步表明了组合过渡金属渗透的改​​善的焦化性。

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