首页> 外文期刊>Electrochimica Acta >Effect of synthesis condition on the structure and electrochemical properties of Li[Ni{sub}(1/3)Mn{sub}(1/3)Co{sub}(1/3)]O{sub}2 prepared by hydroxide co-precipitation method
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Effect of synthesis condition on the structure and electrochemical properties of Li[Ni{sub}(1/3)Mn{sub}(1/3)Co{sub}(1/3)]O{sub}2 prepared by hydroxide co-precipitation method

机译:合成条件对氢氧化钴制备Li [Ni {sub}(1/3)Mn {sub}(1/3)Co {sub}(1/3)] O {sub} 2的结构和电化学性能的影响沉淀法

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The layered Li[Ni{sub}(1/3)Mn{sub}(1/3)Co{sub}(1/3)]O{sub}2 powder with good crystalline and spherical shape was prepared by hydroxide co-precipitation method. The effects of pH value, NH{sub}4OH amount, calcination temperature and extra Li amount on the morphology, structure and electrochemical properties of the cathode material were investigated in detail. SEM results indicate that pH value affected both the morphology and the property of the cathode material, and the highest discharge capacity in the first cycle of 163 mAhg{sup}(-1) (2.8-4.3 V) was obtained at pH value was 12. On the contrary, the NH{sub}4OH amount, which was used as a chelating agent, only affected the particle size distribution of the material. The calcination temperatures caused great difference in the structure and property of layered Li[Ni{sub}(1/3)Mn{sub}(1/3)Co{sub}(1/3)]O{sub}2, and the best electrochemical properties were obtained at the calcination temperature of 800℃. Extra Li amount not only caused difference in the material structure, but also affected their electrochemical properties. With increasing Li amount, the lattice parameters (a and c) increased monotonously, and the highest first cycle coulombic efficiency (the ratio of discharge capacity to charge capacity in the first cycle) was obtained with the Li/M of 1.10. Therefore, the optimum synthetic conditions for the hydroxide co-precipitation reaction were: pH value was 12, NH{sub}4OH amount was 0.36 mol L{sup}(-1), calcination temperature was 800℃ and the Li/M molar ratio was 1.10.
机译:采用氢氧化物共沉淀法制备了层状Li [Ni {sub}(1/3)Mn {sub}(1/3)Co {sub}(1/3)] O {sub} 2粉末。沉淀法。详细研究了pH值,NH {sub} 4OH含量,煅烧温度和过量Li含量对正极材料的形貌,结构和电化学性能的影响。 SEM结果表明,pH值会影响正极材料的形态和性能,在pH值为12时,第一循环的最高放电容量为163 mAhg {sup}(-1)(2.8-4.3 V)。相反,用作螯合剂的NH {sub} 4OH的量仅影响材料的粒度分布。煅烧温度引起层状Li [Ni {sub}(1/3)Mn {sub}(1/3)Co {sub}(1/3)] O {sub} 2的结构和性能差异很大,并且在800℃的煅烧温度下可获得最佳的电化学性能。过量的锂不仅会引起材料结构的差异,还会影响其电化学性能。随着Li量的增加,晶格参数(a和c)单调增加,并且在Li / M为1.10的情况下获得了最高的第一循环库仑效率(第一循环中的放电容量与充电容量之比)。因此,氢氧化物共沉淀反应的最佳合成条件为:pH值为12,NH {sub} 4OH量为0.36 mol L {sup}(-1),煅烧温度为800℃,Li / M摩尔比为是1.10。

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