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钕和钆能改善合金电极的循环稳定性. 工作温度对合金电极的放电容量影响较大,过高的温度使其循环容量衰减加剧; 而含稀土元素的合金电极在333 K温度下放电容量达到最大值. 稀土对合金电极的荷电保持率产生一定影响; 镧,铈,镨的添加能够改善合金电极的倍率放电性能. 关键词:钒基固溶体合金; 电化学性能; MH-Ni电池; 稀土; [全文内容正在添加中] ......
力没有明显提高. 关键词:镧; 钒基固溶体; 电化学性能; MH-Ni电池; 稀土; [全文内容正在添加中] ...镧对Ti-V-Mn-Ni贮氢合金结构及电化学性能的影响 赵敏寿1,李佳1,侯春平1,黄亮1,曹广益2,朱新坚2 (1.燕山大学环境与化学工程学院,河北,秦皇岛,066004;2.上海交通大学燃料电池研究所,上海,200030) 摘要:研究了Ti1.0V1.1-xMn0.5Ni0.4Lax(x=0, 0.05, 0.1, 0.15和0.2)贮氢合金的相结构和电化学性能. 结果表明, 当无La......
到x=0.75时的216.1 mAh·g-1. 合金的电化学P-C-T曲线表明: 无Ni的CeMnAl合金几乎没有平衡氢压平台, 随Ni取代量的增加, 合金的平衡氢压平台斜率变小, 宽度增大. 关键词:贮氢合金; 电化学性能; MH-Ni电池; Laves相; [全文内容正在添加中] ......
·g-1下的最大放电容量, 但对其理论放电容量几乎没有影响;合金的放电容量对温度的变化比较敏感, 过高的温度使其容量发生衰减, 含稀土元素的合金电极在323 K温度下放电容量达到最大值. 稀土对合金电极的荷电保持率产生不利影响, 镧,钕和混合稀土的添加能够改善合金电极的倍率放电性能. 关键词:钒基固溶体合金; 电化学性能; MH-Ni电池; 稀土; [全文内容正在添加中] ...稀土对Ti-Zr-V-Cr-Ni合金微观结构和电化学性能的影响 赵敏寿1,李佳1,侯春平1,黄亮1,曹广益2,朱新坚2 (1.燕山大学环境与化学工程学院,河北,秦皇岛,066004;2.上海交通大学燃料电池研究所,上海,200030) 摘要:研究了稀土对Ti0.17Zr0.08V0.35Cr0.1Ni0.3合金的微观结构和电化学性能的影响. 结果表明......
Tailoring the microstructure and improving the discharge properties of dilute Mg-Sn-Mn-Ca alloy as anode for Mg-air battery through homogenization prior to extrusionXiong-jie Gu1,Wei-li Cheng1,2,Shi... on the microstructural characteristics and resultant discharge properties of Mg-Sn-Mn-Ca alloy in extruded condition as anode for Mg-air battery was investigated.HPE treatment exerts a prominent......
化学镀Ni-Co-P合金对Mm(NiCoAlMn)5贮氢合金电极动力学性能的影响 胡万起1,唐致远2,郭鹤桐2,孙春文3,李道昭1 (1.中国科学院化工冶金研究所,;2.天津大学化工学院,;3.中国科学院化工冶金研究所,天津大学化工学院) 摘要:通过电化学方法,研究了化学镀Ni-Co-P合金对Mm(NiCoAlMn)5五元稀土贮氢合金电极动力学性能的影响.研究表明,引入很少量(1%~2%)Co的Ni-Co-P合金镀层可有效地提高 MH电极的交换电流密度i0,极限电流密度iL及α相中氢的扩散系数Dα(H);还研究了化学镀Ni-Co-P合金对稀土贮氢合金电极循环伏安(CV)曲线和阴,阳极极化曲线及对称因子β的影响,进而阐明了化学镀对MH电极过程动力学的影响. 关键词:稀土; 稀土基贮氢合金; 化学镀Ni-Co-P合金; 动力学性能; MH-Ni电池; [全文内容正在添加中] ......
Electrochemical hydrogen storage behaviors of as-cast and spun RE-Mg-Ni-Co-Al-based AB2-type alloys applied to Ni-MH batteryYang-Huan Zhang1,2,Gang Huang1,2,Ze-Ming Yuan1,2,Shi-Hai Guo2,Yan Qi2,Dong... and Steel Research Institute摘 要:Preparation of La-Mg-Ni-Co-Al-based AB2-type alloys La0.8-xCe0.2YxMgNi3.4Co0.4Al0.1(x=0,0.05,0.10,0.15,0.20) was performed......
In situ sol-gel synthesis of Ti2Nb10O29/C nanoparticles with enhanced pseudocapacitive contribution for a high-rate lithium-ion batteryGuang-Yin Liu,Yi-Yang Zhao,Yu-Feng Tang,Xiao-Di Liu,Miao Liu,Peng-Jiang WuCollege of Chemistry and Pharmaceutical Engineering,Nanyang Normal University摘 要: Sr2+-doped rhombohedral LiHf2(PO4)3 solid electrolyte for allsolid-state Li-metal batteryQing-Hui Li1,Chang Xu2,3,Bing Huang2,3,Xin Yin11. College of Electrical and Information Engineering,Hunan University2. State Key Laboratory of New Ceramics and Fine Processing,School of Materials Science and Eng......Sr2+-doped rhombohedral LiHf2(PO4)3 solid electrolyte for allsolid-state Li-metal battery
来源: 《Rare Metals2020年第9期》——Qing-Hui Li Chang Xu Bing Huang Xin Yin
VO2(B) Nanosheets as a Cathode Material for Li-ion BatteryQiang Wang,Jing Pan,Ming Li,Yuanyuan Luo,Hao Wu,Li Zhong,Guanghai LiKey Laboratory of Materials Physics,Anhui Key Laboratory of Nanomaterials and Nanotechnology,Institute of Solid State Physics,Chinese Academy of Sciences摘 要: <上一页 1 ... 11 12 13 14 15 16 17 18 19 20 ... 146 下一页 >