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In Operando Electrochemical High-Temperature X-Ray Diffraction Study of Ni-Ce_(0.9)Gd_(0.1)O_(2-δ) Redox Properties

机译:在Operando电化学高温X射线衍射研究Ni-Ce_(0.9)Gd_(0.1)O_(2-δ)氧化还原性能

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A new in operando measurement cell has been developed for simultaneous monitoring of electrochemical (EC) properties and crystallographic structure using high temperature (HT) X-ray diffraction analysis (XRD) of solid oxide fuel cell (SOFC) anodes at working conditions. The influence of oxide ion flux on crystallographic structure of Gd_(0.1)Ce_(0.9)O_(2-δ) (GDC) in Ni-GDC cermet anode as well as impact of Ni ->,<- NiO redox cycles on the performance of anode has been studied. Influence of temperature, pO_2 in gas stream and oxide ion flux through the membrane on the GDC lattice parameters was observed. Decrease of electrode polarization, i.e. increase of oxide ion flux lead to decrease of unit cell volume of the GDC lattice. The observed diminishing of GDC lattice parameter caused by oxide ion flux at -0.9 V was approximately same as the change caused by 50 degree of temperature decrease.
机译:已经开发了一种新的Operando测量电池,用于同时监测使用高温(HT)X射线衍射分析(SOFC)阳极在工作条件下的高温(HT)X射线衍射分析(XRD)的电化学(EC)性能和晶体结构。氧化离子通量对Ni-GDC金属陶瓷阳极中GD_(0.1)CE_(0.9)CE_(0.9)O_(2-δ)(GDC)的晶体结构的影响以及Ni - >的影响,< - NiO氧化还原循环对性能的影响阳极已经研究过。观察到温度,PO_2在气流中通过膜的气流和氧化离子通量在GDC晶格参数上的影响。电极极化的降低,即氧化离子通量的增加导致GDC晶格的单位细胞体积降低。观察到由-0.9V的氧化离子通量引起的GDC晶格参数的减少大致与50度温度降低引起的变化相同。

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