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镍酸钐研究进展及其用于海洋电场传感器的可行性分析 被引量:2
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作者 肖月桐 王猛 +4 位作者 王兴卓 陈凯 时宗洋 赵一宇 付悦思 《物探与化探》 CAS 北大核心 2022年第2期418-423,共6页
海洋电场信号被广泛用于海底以下地质构造、水体目标探测、物理海洋和海洋物理特性分析等研究领域,收集海洋电场信号有重要的科学价值,其中海洋电场传感器是其测量媒介。近年来,钙钛矿型复合氧化物作为新型材料成为研究热点,镍酸钐是钙... 海洋电场信号被广泛用于海底以下地质构造、水体目标探测、物理海洋和海洋物理特性分析等研究领域,收集海洋电场信号有重要的科学价值,其中海洋电场传感器是其测量媒介。近年来,钙钛矿型复合氧化物作为新型材料成为研究热点,镍酸钐是钙钛矿复合氧化物中性能比较特殊的一个,具有金属—绝缘体相变特性,在海水中稳定性强,对低频电场信号敏感度高,有望成为新型海洋电场传感器的电极材料。国内外学者对镍酸钐进行了一些研究,主要集中于镍酸钐的电学特性尤其是金属—绝缘体相变特性、光学特性及其制备流程。本文对上述研究内容进行了系统综述,并对镍酸钐用于海洋电场传感器的可行性进行了初步探讨。 展开更多
关键词 镍酸钐海洋电场传感器 镍酸钐 海洋电场 电极 传感器 金属—绝缘体相变
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Physicochemical properties of proton-conducting SmNiO3 epitaxial films
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作者 Xing Xu Chen Liu +3 位作者 Jing Ma Allan J.Jacobson Cewen Nan Chonglin Chen 《Journal of Materiomics》 SCIE EI 2019年第2期247-251,共5页
Proton conducting SmNiO_(3)(SNO)thin films were grown on(001)LaAlO_(3)substrates for systematically investigating the proton transport properties.X-ray Diffraction and Atomic Force Microscopy studies reveal that the a... Proton conducting SmNiO_(3)(SNO)thin films were grown on(001)LaAlO_(3)substrates for systematically investigating the proton transport properties.X-ray Diffraction and Atomic Force Microscopy studies reveal that the as-grown SNO thin films have good single crystallinity and smooth surface morphology.The electrical conductivity measurements in air indicate a peak at 473 K in the temperature dependence of the resistance of the SNO films,probably due to oxygen loss on heating.A Metal-Insulator-Transition occurs at 373 K for the films after annealing at 873 K in air.In a hydrogen atmosphere(3%H_(2)/97%N_(2)),an anomalous peak in the resistance is found at 685 K on the first heating cycle.Electrochemical Impedance Spectroscopy studies as a function of temperature indicate that the SNO films have a high ionic conductivity(0.030 S/cm at 773 K)in a hydrogen atmosphere.The activation energy for proton conductivity was determined to be 0.23 eV at 473-773 K and 0.37 eV at 773e973 K respectively.These findings demonstrate that SNO thin films have good proton conductivity and are good candidate electrolytes for low temperature proton-conducting Solid Oxide Fuel Cells. 展开更多
关键词 smnio_(3) Thin film Transport properties Ionic conductivity Impedance measurements
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