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Enhanced electrochemical activity and long-term stability of Ni-YSZ anode derived from NiO-YSZ interdispersed composite particles

机译:NiO-YSZ互分散复合粒子产生的Ni-YSZ阳极增强的电化学活性和长期稳定性

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Nickel oxide-yttira stabilized zirconia (NiO-YSZ) interdispersed composite (IC) particles were prepared by mechanochemical processing using NiO and YSZ nanoparticles. Transmission electron microscopy (TEM) revealed that primary particles of YSZ (75 nm) and NiO (160 nm) were presented alternately in the composite particles. Specific surface area (SSA) decreased from 8.6 to 7.1 m{sup}2/g during the mechanochemical processing. The SSA reduction suggested that the chemically bound NiO/YSZ hetero-interfaces were formed during the processing. Scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM-EDS) visualized that the anode made from the IC particles consisted of a three-dimensional textured structure of fine Ni and YSZ networks (grain size approximately 500 nm) with 34 vol% porosity. The anode demonstrated not only low polarization of 152 mV at 1 A/cm{sup}2 even under operation at 700℃, but also long-term stability for 920 h.
机译:使用NiO和YSZ纳米粒子通过机械化学方法制备了氧化镍-氧化钇稳定的氧化锆(NiO-YSZ)互分散复合材料(IC)粒子。透射电子显微镜(TEM)显示,YSZ(75 nm)和NiO(160 nm)的一次颗粒交替出现在复合颗粒中。在机械化学加工过程中,比表面积(SSA)从8.6降至7.1 m {sup} 2 / g。 SSA还原表明在处理过程中形成了化学键合的NiO / YSZ异质界面。带有能量色散X射线光谱(SEM-EDS)的扫描电子显微镜显示,由IC颗粒制成的阳极由精细的Ni和YSZ网络(晶粒尺寸约为500 nm)的三维织构结构组成,孔隙率为34 vol% 。阳极不仅在1 A / cm {sup} 2的条件下即使在700℃的条件下也显示出152 mV的低极化,而且在920 h内具有长期稳定性。

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