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表面包覆Co(OH)_2和Er(OH)_3的球形Ni(OH)_2的高温性能
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作者 赫文秀 安胜利 +3 位作者 张永强 蒋文全 孙海峰 杨慧 《中国有色金属学报》 EI CAS CSCD 北大核心 2012年第4期1142-1146,共5页
利用化学沉淀法在球形Ni(OH)2表面复合包覆Co(OH)2和Er(OH)3,利用XRD、SEM和恒电流充放电技术测试其结构、表面微观形貌和充放电性能。研究不同包覆量对其常温和高温性能的影响,确定最佳包覆比为1%(质量分数)。循环伏安测试结果表明:包... 利用化学沉淀法在球形Ni(OH)2表面复合包覆Co(OH)2和Er(OH)3,利用XRD、SEM和恒电流充放电技术测试其结构、表面微观形貌和充放电性能。研究不同包覆量对其常温和高温性能的影响,确定最佳包覆比为1%(质量分数)。循环伏安测试结果表明:包覆Er(OH)3的球形Ni(OH)2可以有效提高镍正极在高温环境下的析氧副反应电位,从而抑制析氧副反应的发生,最终提高镍电极在高温环境下的充电效率和活性物质利用率。 展开更多
关键词 球形ni(OH)2 充放电性能 高温性能 er(OH)3 包覆
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Er^(3+)/Ni^(2+)共掺双相微晶玻璃的结构与发光性能研究
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作者 余运龙 《人工晶体学报》 EI CAS CSCD 北大核心 2016年第3期821-825,共5页
采用熔融法制备了Er3+/Ni^(2+)共掺含Gd F3与Ga_2O_3双晶化相透明微晶玻璃。X射线粉末衍射(XRD)和透射电子显微(TEM)分析表明,平均粒径为34 nm的六方相Gd F3和9 nm的立方相Ga2O3晶粒在玻璃基体中均匀分布。吸收与荧光光谱结果显示,Er3+... 采用熔融法制备了Er3+/Ni^(2+)共掺含Gd F3与Ga_2O_3双晶化相透明微晶玻璃。X射线粉末衍射(XRD)和透射电子显微(TEM)分析表明,平均粒径为34 nm的六方相Gd F3和9 nm的立方相Ga2O3晶粒在玻璃基体中均匀分布。吸收与荧光光谱结果显示,Er3+位于Gd F3纳米晶,Ni^(2+)选择性地进入Ga2O3纳米晶。受益于此,在976 nm激光激发下,透明微晶玻璃具有覆盖1050~1600 nm波段的宽近红外发射带,由位于1210 nm的Ni^(2+):3T2(F)→3A2(F)跃迁转变和位于1530 nm的Er^(3+):4I13/2→4I15/2跃迁转变组成。 展开更多
关键词 er3+/ni2+共掺 双晶化相 微晶玻璃 显微结构 发光性能
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Ytterbium Hydroxide and Erbium Hydroxide Coating of Spherical Nickel Hydroxide Positive Materials for Ni-MH Batteries at High-Temperature 被引量:1
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作者 张文广 蒋文全 +5 位作者 于丽敏 傅钟臻 夏雯 郭荣贵 陈飞彪 李涛 《Journal of Rare Earths》 SCIE EI CAS CSCD 2007年第S1期400-405,共6页
For the purpose of the important high-temperature charge-discharge performances of spherical Ni(OH)2 used as positive materials for Ni-MH batteries, Yb(OH)3 and Er(OH)3 were used for surface coating of spherical Ni(OH... For the purpose of the important high-temperature charge-discharge performances of spherical Ni(OH)2 used as positive materials for Ni-MH batteries, Yb(OH)3 and Er(OH)3 were used for surface coating of spherical Ni(OH)2 to improve its high-temperature properties. The coated spherical Ni(OH)2 was prepared by chemically coprecipitation of Yb(OH)3 and Er(OH)3 on the surface of spherical Ni(OH)2, respectively. The products were characterized by X-ray diffraction(XRD) and scanning electron microscope(SEM). The X-ray analysis showed that the structure of the coated spherical Ni(OH)2 was still β-Ni(OH)2. The SEM studies revealed that coating layer uniformly covered the surface of spherical Ni(OH)2. The electrochemical studies revealed that coating of Yb(OH)3 and Er(OH)3 exhibited superior performance such as high discharge capacity, excellent charge-discharge properties at high-discharge rate at 65 ℃. The charge acceptance was above 85% at 1C rate at 65 ℃. The discharge capacity approached to 230 mAh·g-1 at 0.2C rate, which even reached 270 mAh·g-1 at 1C rate for both Yb(OH)3 and Er(OH)3 coated spherical Ni(OH)2, where the discharge capacity for uncoated one was only 250 mAh·g-1 . The cyclic voltammetry analysis of spherical Ni(OH)2 showed that the oxidation potential, the oxygen evolution potential, and the difference between them increased after the coating both at 25 and 65 ℃. It was shown that the Yb(OH)3 and Er(OH)3 coating is an effective way to improve the high-temperature performance of spherical Ni(OH)2 for Ni-MH batteries. The studies showed that Yb(OH)3 and Er(OH)3 coated spherical Ni(OH)2 would be a promising material of Ni-MH batteries for hybrid vehicle (HEVs), electric vehicles(EVs) and rapid charge devices due to excellent high rate charge-discharge performance. 展开更多
关键词 Yb(OH)_3 er(OH)_3 spherical ni(OH)_2 COATING high-temperature high-discharge rate
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