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首页> 外文期刊>International journal of applied mechanics >High Capacity Prismatic Type Layered Electrode with Anionic Redox Activity as an Efficient Cathode Material and PVdF/SiO2 Composite Membrane for a Sodium Ion Battery
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High Capacity Prismatic Type Layered Electrode with Anionic Redox Activity as an Efficient Cathode Material and PVdF/SiO2 Composite Membrane for a Sodium Ion Battery

机译:具有阴离子氧化还原活性的高容量棱柱型分层电极作为钠离子电池的高效阴极材料和PVDF / SiO2复合膜

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摘要

A prismatic type layered Na2/3Ni1/3Mn2/3O2 cathode material for a sodium ion battery is prepared via two different methods viz., the solid state and sol-gel method with dissimilar surface morphology and a single phase crystal structure. It shows tremendous electrochemical chattels when studied as a cathode for a sodium-ion battery of an initial specific discharge capacity of 244 mAh g(-1) with decent columbic efficiency of 98% up to 250 cycles, between the voltage range from 1.8 to 4.5 V (Na+/Na) at 0.1 C under room temperature. It is much higher than its theoretical value of 173 mAh g(-1) and also than in the earlier reports (228 m Ah g(-1)). The full cell containing this material exhibits 800 mAh g(-1) at 0.1 C and withstands until 1000 cycles with the discharge capacity of 164 mAh g(-1). The surpassing capacity was expected by the anionic (oxygen) redox process, which elucidates the higher capacity based on the charge compensation phenomenon.
机译:用于钠离子电池的棱镜型层状Na2 / 3Ni1 / 3Mn2 / 3O2阴极材料通过两种不同的方法,具有两种不同的方法,具有不同的表面形貌和单相晶结构的固态和溶胶 - 凝胶法。 它显示巨大的电化学动产,当初始特异性放电容量的钠离子电池为244mAhg(-1)的钠离子电池的阴极,具有98%至250个循环的体面培养效率,在1.8至4.5的电压范围内 v(Na + / Na)室温下0.1℃。 它远高于其173mAhg(-1)的理论值,也比早期的报告(228米AH G(-1)))。 含有该材料的全细胞在0.1℃下表现出800mAhg(-1)并承受1000次循环,放电容量为164mAhg(-1)。 通过阴离子(氧)氧化还原过程预期超过的能力,其阐明了基于电荷补偿现象的较高容量。

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