采用熔盐法合成了LiMn2O4。熔盐的使用可以使原来固相反应的高温焙烧时间缩短。合成获得的材料结晶良好,颗粒大小在数百个纳米左右,有较明显的团聚现象。该材料的初始容量为113mAh·g-1,循环性能优良,前100次的容量平均衰减率在0.05%左右;倍率性能亦非常优秀,8C放电时的容量为1C放电容量的93%以上。熔盐的用量在4倍于Li+以上时,对材料的结构形貌和性能都没有明显影响。Sub-micrometer spinel LiMn2O4 was prepared by molten salt Synthesis method, in which molten salt KCl supplies a liquid surrounding for rapid ion reaction at high temperature. By this method, the sintering time could be shortened largely. When assembled as cathode of lithium battery, the LiMn2O4 materials gotten from this new method show good cyclic ability with capacity loss rate about 0.05% during first 100 cycles. And its rate performance is wonderful with the special capacity at 8 C is above 93% of that at 1 C.SCI(E)中文核心期刊要目总览(PKU)中国科技核心期刊(ISTIC)中国科学...
Spinel LiMn2O4 microspheres with durable high rate capability were synthesized by a facile route usi...
用一种改进的氢氧化物共沉淀法制备了粒径均一、近球形的Mn0.4 Ni0.4 Co0.2(OH)2,再通过高温固相合成法制备了高密度的LiMn0.4Ni0.4Co0.2O2正极材料.结果表明,在沉淀体系...
FORMATION OF SPINEL STRUCTURE IN SYNTHESIS PROCESS OF Li1.37Mn2O4 USING HYDROTHERMAL METHOD. Li1.37M...
采用CTAB-C8H18-C4H9OH-H2O微乳体系制备出MnCO3,将其灼烧成Mn2O3之后,与Li2CO3混合,800℃高温焙烧,获得了颗粒大小为数百纳米,均匀分布的纯相尖晶石LiMn2O4.这...
Spinel LiMn2O4 was synthesized from CH3COOLi⋅2H2O, Mn(CH3COO)2 and adipic acid via sol-gel process. ...
采用固相反应和湿化学两种方法合成了材料LiNixMn2-xO4.含Ni量影响材料在4.7 V高电压区间的容量,用固相反应法制备的LiNi0.5Mn1.5O4中含有杂相物质,首次放电容量可以达到118 ...
采用溶胶_凝胶法合成尖晶石LiMn2 O4 ,并以LiCoO2 对其进行包覆 ,用XRD、SEM、EPMA等方法对修饰的尖晶石结构和性能进行研究 .结果表明 ,经包覆的LiMn2 O4 在 70 0℃...
Spinel LiNi0.5Mn1.5O4 (LNMO) with a loose structure is successfully synthesized through a modified K...
The compound, LiMn2O4 is synthesized by a one-pot molten salt method using NaCl–KCl (1 : 1) as the e...
In this study, spinel LiMn2O4 powder was synthesized from LiOH.H2O and MnOx by conventional and mech...
用螯合法合成出掺杂镍和氯的尖晶石锂锰氧化物LizMn2-xNixO4-yCly.用能谱和原子吸收光谱分析测试了合成的样品的组成.分析了材料的电化学性能、FT-IR和XRD特性.结果表明:与没有掺杂的锂...
Using N2H4\ub7H2O as reductant \u3b3-Mn3O4 particles were obtained from the electrolytic manganese d...
In this research, spinel LiMn2O4 with high crystallinity was rapidly prepared by a solid-state combu...
Pristine spinel lithiummanganese oxide (LiMn2O4) and zinc- and cerium-doped lithiummanganese oxide ...
Spinel-structured lithium manganese oxide (LiMn2O4) has been successfully used as a cathode material...
Spinel LiMn2O4 microspheres with durable high rate capability were synthesized by a facile route usi...
用一种改进的氢氧化物共沉淀法制备了粒径均一、近球形的Mn0.4 Ni0.4 Co0.2(OH)2,再通过高温固相合成法制备了高密度的LiMn0.4Ni0.4Co0.2O2正极材料.结果表明,在沉淀体系...
FORMATION OF SPINEL STRUCTURE IN SYNTHESIS PROCESS OF Li1.37Mn2O4 USING HYDROTHERMAL METHOD. Li1.37M...
采用CTAB-C8H18-C4H9OH-H2O微乳体系制备出MnCO3,将其灼烧成Mn2O3之后,与Li2CO3混合,800℃高温焙烧,获得了颗粒大小为数百纳米,均匀分布的纯相尖晶石LiMn2O4.这...
Spinel LiMn2O4 was synthesized from CH3COOLi⋅2H2O, Mn(CH3COO)2 and adipic acid via sol-gel process. ...
采用固相反应和湿化学两种方法合成了材料LiNixMn2-xO4.含Ni量影响材料在4.7 V高电压区间的容量,用固相反应法制备的LiNi0.5Mn1.5O4中含有杂相物质,首次放电容量可以达到118 ...
采用溶胶_凝胶法合成尖晶石LiMn2 O4 ,并以LiCoO2 对其进行包覆 ,用XRD、SEM、EPMA等方法对修饰的尖晶石结构和性能进行研究 .结果表明 ,经包覆的LiMn2 O4 在 70 0℃...
Spinel LiNi0.5Mn1.5O4 (LNMO) with a loose structure is successfully synthesized through a modified K...
The compound, LiMn2O4 is synthesized by a one-pot molten salt method using NaCl–KCl (1 : 1) as the e...
In this study, spinel LiMn2O4 powder was synthesized from LiOH.H2O and MnOx by conventional and mech...
用螯合法合成出掺杂镍和氯的尖晶石锂锰氧化物LizMn2-xNixO4-yCly.用能谱和原子吸收光谱分析测试了合成的样品的组成.分析了材料的电化学性能、FT-IR和XRD特性.结果表明:与没有掺杂的锂...
Using N2H4\ub7H2O as reductant \u3b3-Mn3O4 particles were obtained from the electrolytic manganese d...
In this research, spinel LiMn2O4 with high crystallinity was rapidly prepared by a solid-state combu...
Pristine spinel lithiummanganese oxide (LiMn2O4) and zinc- and cerium-doped lithiummanganese oxide ...
Spinel-structured lithium manganese oxide (LiMn2O4) has been successfully used as a cathode material...
Spinel LiMn2O4 microspheres with durable high rate capability were synthesized by a facile route usi...
用一种改进的氢氧化物共沉淀法制备了粒径均一、近球形的Mn0.4 Ni0.4 Co0.2(OH)2,再通过高温固相合成法制备了高密度的LiMn0.4Ni0.4Co0.2O2正极材料.结果表明,在沉淀体系...
FORMATION OF SPINEL STRUCTURE IN SYNTHESIS PROCESS OF Li1.37Mn2O4 USING HYDROTHERMAL METHOD. Li1.37M...