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Synthesis and electrochemical characterization of LiNi_(0.78)Co_(0.2)Al_(0.02)O_2 cathode material in a novel co-precipitation method 被引量:1
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作者 顾大明 田启友 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2008年第3期436-438,共3页
LiNi0.78 Co0.2 Al0.02O2 cathode materials were prepared with a novel co-precipitation method followed by heat-treating. The properties of the materials were characterized. XRD patterns showed that no secondary phase a... LiNi0.78 Co0.2 Al0.02O2 cathode materials were prepared with a novel co-precipitation method followed by heat-treating. The properties of the materials were characterized. XRD patterns showed that no secondary phase appeared and the hexagonal lattice parameter c of LiNi0.rsCoo.2AI^0202 was larger than that of LiNi0.8Co0.2O2. The SEM images indicated that the powders of the material were submicron size. The results of the ICP-AES analysis proved that elemental compositions of the material were similar to those of the targeted one. Cyclic voltammetry (3.0- 4. 2 V) illustrated that the new material had good lithium-ion intercalation/de-intercalation performance. The results of galvanostatic cycling showed that the initial specific discharge capacity of the prepared material was 181.4 mAh/g, and the specific discharge capacity was 177.3 mAh/g after 100 cycles (0. 2C, 3.0 - 4. 2 V, vs. Li^+/Li) with the capacity retention ratio of 97.7%. 展开更多
关键词 lithium ion battery CO-PRECIPITATION LINI0.8CO0.2O2 cathode material Al doped
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电解Co_(0.2)Ni_(0.8)合金制备LiCo_(0.2)Ni_(0.8)O_2的研究 被引量:3
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作者 魏进平 夏小勇 +2 位作者 阎杰 宋德瑛 潘桂玲 《电池》 CAS CSCD 北大核心 2002年第z1期53-55,共3页
利用电解钴镍合金制得Co0.2Ni0.8(OH)2中间产物,然后根据钴镍含量与LiOH·H2O固相反应制得了LiCo0.2Ni0.8O2。通过X光衍射和扫描电镜测试表明,所得的锂离子正极材料LiCo0.2Ni0.8O2结构纯正,粒度分布集中;对其进行充放电实验表明,... 利用电解钴镍合金制得Co0.2Ni0.8(OH)2中间产物,然后根据钴镍含量与LiOH·H2O固相反应制得了LiCo0.2Ni0.8O2。通过X光衍射和扫描电镜测试表明,所得的锂离子正极材料LiCo0.2Ni0.8O2结构纯正,粒度分布集中;对其进行充放电实验表明,放电容量比较高,首次放电容量达到156mAh/g,循环20次后容量仍保持在146mAh/g。该法可大大降低制备锂离子正极材料的生产成本,具有十分广阔的应用前景。 展开更多
关键词 锂离子电池 正极材料 LiCo0.2Ni0.8O2 电解
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Improved electrochemical performances of yttrium oxyfluoride-coated Li[Li0.2Mn0.54Ni0.13Co0.13]O2 for lithium ion batteries 被引量:3
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作者 Yaxin Hao Fangning Yang +2 位作者 Didi Luo Jianhua Tian Zhongqiang Shan 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第4期1239-1246,共8页
The Li-rich layered oxides show a higher discharge capacity over 250 mAh/g and have been developed into a promising positive material for lithium ion batteries. A rare earth metal oxyfluoride YOF-coated Li[Lio.2Mno.54... The Li-rich layered oxides show a higher discharge capacity over 250 mAh/g and have been developed into a promising positive material for lithium ion batteries. A rare earth metal oxyfluoride YOF-coated Li[Lio.2Mno.54Ni0.13Co0.13]O2 composites have been synthesized by a simple wet chem- ical method. Crystal structure, micro-morphology and element valence of the pristine and YOF-coated Li[Li0.2Mn0.54Ni0.13Co0.13]O2 materials are characterized by XRD, SEM, TEM, and XPS. The results indicate that all materials exhibit a typical layered structure, and are made up of small and homogenous parti- cles ranging from 100 nm to 200 nm. In addition, YOF layer with a thickness of approximately 3-8 nm is precisely coated on the surface of the Li[Li0.2Mn0.54Ni0.13Co0.13]02. Constant current charge/discharge tests at various current densities show that the electrochemical performance of 2 wt% YOF-coated Li[Li0.2Mn0.54Ni0.13Co0.13]O2 has been improved significantly. 2 wt% YOF-coated Li[Li0.2Mn0.54Ni0.13Co0.13]O2 delivers the highest discharge capacity of 250.4 mAh/g at 20 mA/g among all the samples, and capacity retention of 87% after 100 charge/discharge cycles at 200 mA/g while that of the pristine one is only 81.6%. The superior electrochemical performance of 2wt% YOF-coated sample is ascribed to YOF coating layer, which could not only reduce side reactions between the electrode and liquid electrolyte, but also promote lithium ion migration. 展开更多
关键词 Li[Li0.2 Mn0.54 Ni0.13 Co0.13]O2 YOF-coated cathode material Lithium ion battery
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Novel Gel-like Process for Synthesizing Submicron Li_aNi_(0.8)Co_(0.2)O_2 Powders Used in Lithium Ion Batteries
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作者 Rong Zhong YUAN Zuo Long YU Mei Zhen QU 《Chinese Chemical Letters》 SCIE CAS CSCD 2003年第7期755-758,共4页
A novel gel-like process has been developed for synthesizing LiaNi0.8Co0.2O2 powders, using citric acid as a chelating agent. This process improves the homogeneity of constituent cation and enhances their reactivity ... A novel gel-like process has been developed for synthesizing LiaNi0.8Co0.2O2 powders, using citric acid as a chelating agent. This process improves the homogeneity of constituent cation and enhances their reactivity in the obtained precursor. The results of electrochemical test demonstrated that these materials exhibited excellent electrochemical properties. Its initial capacity reached 181.6 mAh/g and reversible efficiency at the first cycle is about 88.6%. 展开更多
关键词 Lithium ion batteries cathode material LiaNi0.8Co0.2O2 gel-like process.
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高密度球形LiNi_(0.8)Co_(0.2)O_2的制备及性能 被引量:11
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作者 应皆荣 万春荣 +1 位作者 姜长印 李阳兴 《清华大学学报(自然科学版)》 EI CAS CSCD 北大核心 2001年第6期75-77,共3页
采用控制结晶法合成球形 β- Ni0 .8Co0 .2 (OH) 2 ,与L i OH.H2 O 混合 ,在 75 0℃通 O2 热处理 8h 合成球形L i Ni0 .8Co0 .2 O2 粉末。用 X光衍射和扫描电镜分析对 β- Ni0 .8Co0 .2 (OH) 2 和 L i Ni0 .8Co0 .2 O2 粉末的结构进行... 采用控制结晶法合成球形 β- Ni0 .8Co0 .2 (OH) 2 ,与L i OH.H2 O 混合 ,在 75 0℃通 O2 热处理 8h 合成球形L i Ni0 .8Co0 .2 O2 粉末。用 X光衍射和扫描电镜分析对 β- Ni0 .8Co0 .2 (OH) 2 和 L i Ni0 .8Co0 .2 O2 粉末的结构进行了表征。充放电测试表明该球形 L i Ni0 .8Co0 .2 O2 正极材料具有优良的电化学性能 :首次充电比容量为 2 17m A.h.g- 1 ,放电比容量为172 m A.h.g- 1 ,5 0次充放电循环后保持初始放电比容量的97.5 %。该球形 L i Ni0 .8Co0 .2 O2 粉末的振实密度高达 2 .8g.cm- 3,远高于一般非球形 L i Ni0 .8Co0 .2 O2 正极材料。高密度球形 L i Ni0 .8Co0 .2 O2 正极材料用于锂离子电池可以显著提高电池的能量密度。 展开更多
关键词 锂离子电池 正极材料 高密度 球形 控制结晶法
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