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Lithium-Cobalt Citrate Precursors in the Preparation of Intercalation Electrode Materials

机译:柠檬酸锂钴前驱体在制备插层电极材料中的应用

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Noncrystalline solids with LiCoC_6H_5O_7·5H_2O and (NH_4)_3LiCo(C_6H_5O_7)_2 compositions were obtained by ethanol dehydration of concentrated lithium-cobalt citrate solutions. Electron spectroscopy of solutions and solid citrates, as well as IR spectroscopy of solid citrates, reveals that in LiCoC_6H_5O_7·5H_2O one triionized citrate ion chelates Co~(2+) while two triionized citrate ions surround Co~(2+) in (NH_4)_3LiCo(C_6H_5O_7)_2. Lithium-cobalt citrates were used as precursors in the formation of lithium-cobalt mixed oxides. At 400℃, thermal decomposition of LiCoC_6H_5O_7·5H_2O yields a mixture of pseudo-spinel and rhombohedral LiCoO_2. From (NH_4)_3-LiCo(C_6H_5O_7)_2, monophase powders of rhombohedral LiCoO_2 were obtained at 400?, which consist of hexagonal individual particles with a diameter of 80-120 nm. This product can be annealed up to 800℃ without marked structural changes. The rhombohedral LiCoO_2. was used as active cathode material in lithium cells. CycliC voltammogams showed little changes in the main cathodic and anodic peaks with synthesis temperature. The loss of cell capacity is limited in electrodes prepared at 400℃ from citrate precursors as compared with products of low-temperature synthetic procedures previously reported.
机译:通过乙醇脱水浓柠檬酸锂钴溶液,获得具有LiCoC_6H_5O_7·5H_2O和(NH_4)_3LiCo(C_6H_5O_7)_2组成的非晶态固体。溶液和固体柠檬酸盐的电子光谱以及固体柠檬酸盐的红外光谱显示,在LiCoC_6H_5O_7·5H_2O中,一个三离子柠檬酸盐离子螯合物Co〜(2+),而两个三离子柠檬酸盐离子包围(NH_4)中的Co〜(2+)。 _3LiCo(C_6H_5O_7)_2。柠檬酸锂钴用作形成锂钴混合氧化物的前体。在400℃下,LiCoC_6H_5O_7·5H_2O的热分解产生了假尖晶石和菱面体LiCoO_2的混合物。从(NH_4)_3-LiCo(C_6H_5O_7)_2,在400下获得菱形LiCoO_2的单相粉末,其由直径为80-120nm的六角形单个颗粒组成。该产品可在不超过明显结构变化的情况下退火至800℃。菱形LiCoO_2。用作锂电池中的活性阴极材料。 CycliC voltammogams的主阴极和阳极峰随合成温度变化很小。与先前报道的低温合成程序产品相比,在400℃下由柠檬酸盐前体制备的电极中,电池容量的损失受到限制。

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