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Ni-CGO cermet anodes from nanocomposite powders: Microstructural and electrochemical assessment

机译:纳米复合粉末制备的Ni-CGO金属陶瓷阳极:微观结构和电化学评估

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摘要

In this study, composite powders synthesized by a novel one-step sol-gel method were used to obtain Ni-CGO anodes, while anodes of the same composition prepared from commercial powders were used as reference. The anodes performance was studied by impedance spectroscopy and dc polarization in the temperature range of 650-750 °C in flowing humidified 10% H_2+90% N_2 gas mixtures, using a three-electrode configuration cell, with clear advantage for the novel one-step route. One-step anodes fired at 1450 °C showed an area specific resistance of 0.15 Ω cm~2 under open circuit conditions and an anodic overpotential of 91 mV at 750 °C for a current density of 322 mA/cm~2, which are amongst the best results mentioned in the literature. The enhanced electrochemical performance of one-step anodes is mainly attributed to unique microstructural features, namely small grain size (submicrometer scale even after firing at 1450 °C) and homogeneous phase distribution, which is expected to extend the triple-phase boundary length.
机译:在这项研究中,通过新颖的一步法溶胶-凝胶法合成的复合粉末被用于获得Ni-CGO阳极,而由商业粉末制备的相同组成的阳极被用作参考。使用三电极配置电池,通过阻抗光谱法和直流极化,在流动的加湿10%H_2 + 90%N_2混合气体中,在650-750°C的温度范围内研究了阳极性能,对于新型单电极具有明显的优势单步路线。在1450°C下燃烧的一步式阳极在开路条件下的面积比电阻为0.15Ωcm〜2,在750°C的电流密度为322 mA / cm〜2的条件下,阳极过电势为91 mV,其中文献中提到的最佳结果。一步式阳极电化学性能的提高主要归因于独特的微观结构特征,即较小的晶粒尺寸(即使在1450°C下焙烧后仍达到亚微米级)和均匀的相分布,有望延长三相边界的长度。

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