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Electrochemical Properties of LiNi0.6Co0.2Mn0.2O2 Cathode Materials Prepared with Different Ammonia Content

机译:用不同氨含量制备LINI0.6CO0.2MN0.2MN0.202的电化学性能

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The content of ammonia coordination agent in initial aqueous solution is one of important factors which greatly influences the morphologies and electrochemical performances of layered LiNi6Mn2Co2O2 (NCM622). The spherical morphologies, contributing to higher specific capacity of NCM622, ascribe to the same precipitation rate of transition metal ions (Ni2 , Co2 , Mn2 ) during co-precipitation. Hence, the effects of different amounts of ammonia in initial solution on the hydroxide equilibrium constant and properties of NCM622 were discussed. With the ammonia content of 70 mL, the spherical morphology with more perfect layered structure and higher discharge capacity are obtained. The necessity of ammonia content in initial solution are also demonstrated from electrochemical performances of NCM622, such as the initial discharge capacity of 199.8 mAh g?1 at 0.1 C, the specific capacity of 150.0 mAh g?1 after 100th cycles, and the capacity retention rate of 89.6% at 3 C. If other metal ions are anticipated to be chemically doped with NCM622, the hydroxide equilibrium constant and precipitation rate need to be considered.
机译:初始水溶液中氨配位剂的含量是极大地影响层状LINI6MN2CO2O2(NCM622)的形态和电化学性能的重要因素之一。为NCM622的较高特异性提供的球形形态,在共沉淀过程中递成相同的过渡金属离子(Ni2,CO 2,MN2)的沉淀速率。因此,讨论了初始溶液对氢氧化物平衡常数和NCM622的性质的初始溶液中不同量氨的影响。随着70毫升的氨含量,获得具有更完美的层状结构和更高放电容量的球形形态。初始溶液中氨含量的必要性也从NCM622的电化学性能中证明,例如初始放电容量为199.8mAh×1,在0.1℃下,在第100次循环后的150.0mahg≤1的比容量和容量保持在3℃下的速率为89.6%。如果预期其他金属离子进行化学掺杂,则需要考虑氢氧化物平衡常数和沉淀速率。

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