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An operando surface enhanced Raman spectroscopy (SERS) study of carbon deposition on SOFC anodes

机译:操作表面增强拉曼光谱(SERS)研究SOFC阳极上的碳沉积

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Thermally robust and chemically inert Ag@SiO2 nanoprobes are employed to provide the surface enhanced Raman scattering (SERS) effect for an in situ/operando study of the early stage of carbon deposition on nickel-based solid oxide fuel cell (SOFC) anodes. The enhanced sensitivity to carbon enables the detection of different stages of coking, offering insights into intrinsic coking tolerance of material surfaces. Application of a thin coating of gadolinium doped ceria (GDC) enhances the resistance to coking of nickel surfaces. The electrochemically active Ni-YSZ interface appears to be more active for hydrocarbon reforming, resulting in the accumulation of different hydrocarbon molecules, which can be readily removed upon the application of an anodic current. Operando SERS is a powerful tool for the mechanistic study of coking in SOFC systems. It is also applicable to the study of other catalytic and electro-chemical processes in a wide range of conditions.
机译:具有热稳定性和化学惰性的Ag @ SiO2纳米探针被用于提供表面增强拉曼散射(SERS)效应,用于对镍基固体氧化物燃料电池(SOFC)阳极上碳沉积的早期进行原位/操作研究。对碳的增强敏感性使得能够检测出不同阶段的焦化,从而洞悉材料表面的固有焦化耐受性。 do掺杂二氧化铈(GDC)的薄涂层的应用增强了镍表面的抗焦化性。电化学活性的Ni-YSZ界面似乎对碳氢化合物重整更具活性,导致不同碳氢化合物分子的积聚,在施加阳极电流时可以很容易地将其清除。 Operando SERS是用于SOFC系统中焦化机理研究的强大工具。它也适用于在各种条件下研究其他催化和电化学过程。

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