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Zr-doping stabilizes spinel LiMn_(2)O_(4)as a low cost long cycle life cathode for lithium ion batteries 被引量:1
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作者 张祥功 吴伟 +5 位作者 周思思 黄飞 许诗浩 尹良 杨伟 李泓 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第5期554-559,共6页
The present commercial spinel LiMn_(2)O_(4) delivers only 90 m Ah/g–115 m Ah/g,far lower than the theoretical specific capacity.It degrades fast caused by the Jahn–Teller effect,Mn dissolution and related side react... The present commercial spinel LiMn_(2)O_(4) delivers only 90 m Ah/g–115 m Ah/g,far lower than the theoretical specific capacity.It degrades fast caused by the Jahn–Teller effect,Mn dissolution and related side reactions that consume Li inventory.In this work,Zr doping is employed to improve the structural stability and electrochemical performance of spinel LiMn_(2)O_(4).Li_(1.06)Mn_(1.94-x)Zr_xO_4(x=0,0.01,0.02,0.04)have been successfully synthesized by a simple solid-state reaction method and evaluated as cathode for lithium ion batteries(LIB).Li_(1.06)Mn_(1.92)Zr_(0.02)O_4 is superior cathode material with a high capacity of 122 m Ah/g at 1-C rate;long cycle stability,98.39%retention after 100 cycles at 1-C rate,excellent high rate performance 107.1 m Ah/g at 10-C rate,and high temperature performance 97.39%retention after 60 cycles.These are thought to be related to Zr doping effectively stabilizing the spinel LiMn_(2)O_(4),by forming stronger Zr–O bonds in the octahedron,suppressing the Jahn–Teller effect,thus improving electrochemical performance. 展开更多
关键词 lithium battery CATHODE LiMn_(2)O_(4) cycle life
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Structural stability and ion migration of Li_(2)MnO_(3) cathode material under high pressures
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作者 谢泽仁 周思思 +5 位作者 贺贝贝 王欢文 公衍生 金俊 张祥功 汪锐 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第12期449-453,共5页
Some special fields,such as deep-sea exploration,require batteries and their electrode materials to withstand extremely high pressure.As the cathode material has the highest energy density,Li-excess Mn-based materials... Some special fields,such as deep-sea exploration,require batteries and their electrode materials to withstand extremely high pressure.As the cathode material has the highest energy density,Li-excess Mn-based materials are also likely to be utilized in such an environment.However,the effect of pressure on the crystal structure and migration barrier of this kind of material is still not clear at present.Therefore,in this study,we investigate the properties of the matrix material of Li-excess Mn-based material,Li_(2)MnO_(3),under high pressure.The equation of state,bulk modulus,and steady-state volume of Li_(2)MnO_(3) are predicted by the method of first principles calculation.The calculations of unit cells at different pressures reveal that the cell parameters suffer anisotropic compression under high pressure.During compression,Li-O bond is more easily compressed than Mn-O bond.The results from the climbing image nudged elastic band(CINEB)method show that the energy barrier of Li^(+)migration in the lithium layer increases with pressure increasing.Our study can provide useful information for utilizing Li-excess Mn-based materials under high pressure. 展开更多
关键词 lithium-ion battery Li_(2)MnO_(3) high pressure DFT computation
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玉米油与猪油复合油对小鼠血液生化指标及肝脏抗氧化能力的影响 被引量:3
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作者 王吉 刘必英 +4 位作者 严思思 周慧娟 谢文 刘水平 文利新 《中兽医医药杂志》 2016年第5期16-20,共5页
目的:探讨玉米油与猪油复合油对小鼠血脂、血糖及肝脏抗氧化能力的影响。方法:选取SPF级8 w龄C57BL/6J雄性小鼠40只,随机分成4组,分别为3.8%复合油组(57%玉米油∶43%猪油,A1)、6.5%复合油组(57%玉米油∶43%猪油,A2)、3.8%玉米油组(B1)和... 目的:探讨玉米油与猪油复合油对小鼠血脂、血糖及肝脏抗氧化能力的影响。方法:选取SPF级8 w龄C57BL/6J雄性小鼠40只,随机分成4组,分别为3.8%复合油组(57%玉米油∶43%猪油,A1)、6.5%复合油组(57%玉米油∶43%猪油,A2)、3.8%玉米油组(B1)和6.5%玉米油组(B2)。饲养12周之后,称重,采血,称量体内脂肪质量,计算体脂率,检测血脂、血糖以及肝脏氧化损伤指标。结果:(1)A2组和B2组体质量、体脂率均极显著高于同油脂低水平组(P<0.01)。(2)复合油组组间比较,B2组TC、TG、LDL-C水平极显著高于B1组(P<0.01);A1组TC、TG水平极显著高于B1组(P<0.01),HDL-C水平显著高于B1组(P<0.05);B2组HDL-C水平显著低于A2组(P<0.05)。(3)复合油组MDA水平显著低于同一水平玉米油组(P<0.05);A1组T-AOC、SOD、GSH-Px水平显著高于A2组(P<0.05)。结论:长期摄入高水平的油脂会显著增加体质量、体脂率、升高血脂,对机体健康有害,建议减少油脂摄入。在低水平摄入量下,食用复合油能显著降低机体产生的丙二醛含量,减轻机体氧化损伤。在高摄入水平下,食用复合油脂与玉米油相比较,能显著升高HDL水平、降低肝脏MDA和血清TC含量,有益于机体健康。 展开更多
关键词 玉米油 猪油 复合油 血脂 血糖 抗氧化
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