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基于木材制备各向异性孔道结构的厚层碳电极材料的探究 被引量:1
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作者 辛福恩 刘沛静 《化学工程师》 CAS 2019年第10期13-16,31,共5页
合理设计厚层电极材料的结构是能源技术可持续的理想选择,但仍然存在很大的挑战。在此,我们受到天然木材中所固有的各向异性孔道结构的启发,通过分析研究不同原材料,从而筛选最具潜力的天然厚层电极前驱物。经研究发现,相比而言,椴木作... 合理设计厚层电极材料的结构是能源技术可持续的理想选择,但仍然存在很大的挑战。在此,我们受到天然木材中所固有的各向异性孔道结构的启发,通过分析研究不同原材料,从而筛选最具潜力的天然厚层电极前驱物。经研究发现,相比而言,椴木作为硬度适中的一种常见木材,具有发达的孔道结构,同时具有良好的电化学性能,在0.5A·g^-1的电流密度下,测得其比电容为51.6F·g^-1,电压降(IR drop)仅大于松木,说明基于椴木的碳电极材料电容性能最佳,可作为理想的厚层电极前驱物,进一步拓宽电极材料在能源存储领域的应用前景。 展开更多
关键词 电极 厚层电极 生物质 超级电容器 储能设备
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Effect of sub-layer thickness on magnetic and giant magnetoresistance properties of Ni–Fe/Cu/Co/Cu multilayered nanowire arrays 被引量:1
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作者 王宏智 黄波 +3 位作者 邓华权 李浩晨 张卫国 姚素薇 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第7期1231-1235,共5页
Ni-Fe/Cu/Co/Cu multilayered nanowire arrays were electrodeposited into anodic aluminum oxide template by using dual-bath method at room temperature. Scanning electron microscopy and transmission electron microscopy we... Ni-Fe/Cu/Co/Cu multilayered nanowire arrays were electrodeposited into anodic aluminum oxide template by using dual-bath method at room temperature. Scanning electron microscopy and transmission electron microscopy were used to characterize the morphology and structure of the multilayered nanowire arrays. Vibrating sample magnetometer and physical property measurement system were used to measure their magnetic and giant magnetoresistance (GMR) properties. The effect of sub-layer thickness on the magnetic and GMR properties was investigated. The results indicate that magnetic properties of electmdeposited nanowires are not affected obviously by Cu layer thickness, while magnetic layers (Ni-Fe and Co layers) have significant influence. In addition, GMR ratio presents an oscillatory behavior as Cu layer thickness changes. The magnetic and GMR properties of the multilayered nanowire arrays are optimum at room temperature for the material structure of Ni-Fe (25 nm)/Cu (15 nm)/Co (25 nm)/Cu (15 nm) with 30 deposition cycles. 展开更多
关键词 Electrochemistry Ni-Fe/Cu/Co/Cu multilayered nanowires Sub-layer thickness Magnetic property Giant magnetoresistance
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