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首页> 外文期刊>Applied Surface Science >Enhanced electrochemical performances of Li_2MnO_3 cathode materials via adjusting oxygen vacancies content for lithium-ion batteries
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Enhanced electrochemical performances of Li_2MnO_3 cathode materials via adjusting oxygen vacancies content for lithium-ion batteries

机译:通过调节锂离子电池的氧空位含量来增强Li_2mNO_3阴极材料的电化学性能

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In this study, oxygen vacancies are successfully introduced into Li2MnO3 by low-temperature reduction. Electron paramagnetic resonance is used to detect oxygen vacancy and the results state clearly that oxygen vacancies indeed exist in the reduced samples, and R-LMO-40 shows the highest content. The relationships between oxygen vacancies content and the electrochemical performance of Li2MnO3 as cathodes for lithium ion batteries are also investigated. The oxygen-deficient samples show much better electrochemical performance compared to the pristine Li2MnO3, especially R-LMO-40 with an optimized content of oxygen vacancies. At the rates of 0.5 C, 1 C, 2 C and 5 C, R-LMO-40 delivers discharge capacities of 143.1, 134.0, 126.1 and 90.9 mAh g(-1), respectively. After cycling for 50 cycles, there is nearly no capacity decay. These better electrochemical performances are believed to be related to the characteristics of the oxygen vacancies. Electrochemical impedance spectroscopy analysis clearly indicates that oxygen vacancies can suppress the charge transfer resistance and increase lithium ions diffusion capability. These findings reveal that oxygen vacancies can be utilized to enhance the electrochemical performances of Li-rich oxide cathode materials.
机译:在该研究中,通过低温还原成功地将氧空位成功引入Li2MNO 3。电子顺磁共振用于检测氧气空位,结果清楚地清楚地存在于降低的样品中的氧空位,并且R-LMO-40显示最高含量。还研究了氧空位含量与Li2MNO3作为锂离子电池阴极的电化学性能之间的关系。与原始Li2MNO3,尤其是R-LMO-40具有优化的氧空位含量相比,缺氧样本显示出更好的电化学性能。在0.5c,1 c,2 c和5c的速率下,R-LMO-40分别提供143.1,134.0,126.1和90.9mAhg(-1)的放电容量。循环50次循环后,几乎没有容量衰减。这些更好的电化学性能被认为与氧空位的特征有关。电化学阻抗光谱分析清楚地表明氧空位可以抑制电荷传递阻力并增加锂离子扩散能力。这些发现表明,可用于增强富含富氧化物阴极材料的电化学性能的氧空缺。

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