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In-Operando Raman Spectroscopy Study on Oxygen Chemical Potential Gradient in Ni-SDC Cermet Anode for SOFCs

机译:In-Outmando拉曼光谱研究Ni-Sdc Cermet阳极在SOFC中的氧气化学潜力梯度研究

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The cermet of Ni-oxide ion conductor is widely used as an anode in SOFCs. However, the usage of nickel induces various degradation phenomena during discharge operation; e.g., agglomeration and/or oxidation of nickel catalyst, and carbon deposition. In most cases, these degradation phenomena are triggered by the variation in the oxygen chemical potential inside the anode. In this study, then, in-operando Raman spectroscopy was conducted for Ni-SDC (Ni-Ce_(0.8)Sm_(0.2)O_(2-δ) cermet anode at 700°C by applying SDC as a probe for the detection of oxygen chemical potential. This is because the band related to oxygen vacancy in the Raman spectrum of SDC changes depending on the partial pressure of oxygen in the ambient atmosphere. The variation in oxygen chemical potential at the top surface of anode was successfully quantified. The effective reaction zone of anode is also discussed comparing with the data estimated from impedance spectra.
机译:Ni氧化物离子导体的金属陶瓷广泛用作SOFC中的阳极。然而,在放电操作期间使用镍的使用诱导各种降解现象;例如,镍催化剂的凝聚和/或氧化和碳沉积。在大多数情况下,这些降解现象被阳极内的氧化学电位的变化触发。然后,在该研究中,通过将SDC作为检测的探针将SDC在700℃下对Ni-Sdc(Ni-Ce_(0.8)Sm_(0.2)Sm_(0.2)o_(2-Δ)Cermet阳极进行In-Outmando拉曼光谱检查氧气化学势。这是因为SDC的拉曼谱中与氧气空位相关的乐谱根据环境气氛中的氧气的分压而变化。阳极顶部表面上的氧气化学电位的变化被成功定量。有效还讨论了与阻抗光谱估计的数据进行讨论的阳极反应区。

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