LiNi0. 45 Co0. 10 Mn0. 4sO2 was synthesized from Li2CO3 and a triple oxide of nickel, cobalt and manganese at 950 ℃ in air. The structures and characteristics of LiNi0. 45 Co0.10 Mn0. 45 O2, LiCoO2 and LiMn2 O4 were ...LiNi0. 45 Co0. 10 Mn0. 4sO2 was synthesized from Li2CO3 and a triple oxide of nickel, cobalt and manganese at 950 ℃ in air. The structures and characteristics of LiNi0. 45 Co0.10 Mn0. 45 O2, LiCoO2 and LiMn2 O4 were investigated by XRD, SEM and electrochemical measurements. The results show that LiNi0.4s Co0.10 Mn0. 45 O2 has a layered structure with hexagonal lattice. The commercial LicoO2 has sphere-like appearance and smooth surfaces, while the LiMn2 O4 and LiNi0.45 Co0. 10 Mn0. 45 O2 consist of cornered and uneven particles. LiNi0. 45 Co0.10 Mn0. 45 O2 has a large disLiMn2 O4 and LiCoO2, respectively. LiCoO2 and LiMn2 O4 have higher discharge voltage and better rate-capability than LiNi0. 45Co0.10 Mn0. 45 O2. All the three cathodes have excellent cycling performance with capacity retention of above 89.3 % at the 250th cycle. Batteries with LiMn2 O4 or LiNi0.45 Co0.10 Mn0. 45 O2 cathodes show better safety performance under abusive conditions than those with LiCoO2 cathodes.展开更多
用柠檬酸溶胶-凝胶燃烧法制备了锂离子电池正极材料L iN i0.5Co0.5O2,并对材料进行了热分析、红外分析及X射线衍射分析。研究结果表明,L iN i0.5Co0.5O2干凝胶在空气中自蔓延燃烧,燃烧产物再于800℃烧结10 h,可避免因缺氧而导致杂相L i2...用柠檬酸溶胶-凝胶燃烧法制备了锂离子电池正极材料L iN i0.5Co0.5O2,并对材料进行了热分析、红外分析及X射线衍射分析。研究结果表明,L iN i0.5Co0.5O2干凝胶在空气中自蔓延燃烧,燃烧产物再于800℃烧结10 h,可避免因缺氧而导致杂相L i2CO3、L i2N i8O10的产生,产物晶型完整。展开更多
基金Project(50302016) supported by the National Natural Science Foundation of China Project(2005037698) supported by the Postdoctoral Science Foundation of China
文摘LiNi0. 45 Co0. 10 Mn0. 4sO2 was synthesized from Li2CO3 and a triple oxide of nickel, cobalt and manganese at 950 ℃ in air. The structures and characteristics of LiNi0. 45 Co0.10 Mn0. 45 O2, LiCoO2 and LiMn2 O4 were investigated by XRD, SEM and electrochemical measurements. The results show that LiNi0.4s Co0.10 Mn0. 45 O2 has a layered structure with hexagonal lattice. The commercial LicoO2 has sphere-like appearance and smooth surfaces, while the LiMn2 O4 and LiNi0.45 Co0. 10 Mn0. 45 O2 consist of cornered and uneven particles. LiNi0. 45 Co0.10 Mn0. 45 O2 has a large disLiMn2 O4 and LiCoO2, respectively. LiCoO2 and LiMn2 O4 have higher discharge voltage and better rate-capability than LiNi0. 45Co0.10 Mn0. 45 O2. All the three cathodes have excellent cycling performance with capacity retention of above 89.3 % at the 250th cycle. Batteries with LiMn2 O4 or LiNi0.45 Co0.10 Mn0. 45 O2 cathodes show better safety performance under abusive conditions than those with LiCoO2 cathodes.
文摘用柠檬酸溶胶-凝胶燃烧法制备了锂离子电池正极材料L iN i0.5Co0.5O2,并对材料进行了热分析、红外分析及X射线衍射分析。研究结果表明,L iN i0.5Co0.5O2干凝胶在空气中自蔓延燃烧,燃烧产物再于800℃烧结10 h,可避免因缺氧而导致杂相L i2CO3、L i2N i8O10的产生,产物晶型完整。