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正極材料LiNi1/3Li1/9Mn5/9O2的結構和充放電過程研究

Understanding the structure and cycle behavior of LiNi1/3Li1/9Mn5/9O2 positive electrode material

  • 摘要: 應用X射線衍射,選區電子衍射和同步X射線衍射等方法,對鋰離子電池正極材料LiNi1/3Li1/9Mn5/9O2的結構和充放電行為進行了研究.結果表明LiNi1/3Li1/9Mn5/9O2可標定為單相α-NaFeO2,并具有\sqrt 3 ahex.×\sqrt 3 ahex.×\sqrt 3 chex.超結構特征.電池充電時,伴隨鋰離子的脫出,相鄰氧原子層間的靜電斥力逐漸增大,當電壓為3.8V時應力達到最大.接近4.6V時,晶胞常數c急劇下降,絕大多數Li+從材料的鋰層拔出,Ni2+發生氧化.4.6~4.8V之間c增大,a變化很小,說明過渡金屬層中的Li+拔出,而過渡金屬離子的氧化狀態未改變.

     

    Abstract: The structure and cycle behavior of LiNi1/3Li1/9Mn5/9O2 were studied by means of XRD,SAED and synchrotron X-ray diffraction,respectively.The results show that LiNi1/3Li1/9Mn5/9O2 can be indexed based on the α-NaFeO2 single phase and confirmed to be in good agreement with \sqrt 3 ahex.×\sqrt 3 ahex.×chex.superstructure.When the cell was charged to 3.8 V with lithium de-intercalation,the electrostatic repulsion between adjacent oxygen layers gradually increased and became largest near 3.8 V.At 4.6 V the rapid decrease of lattice constant c revealed that the most of the Li+ extracted from the Li-layer,accompanying with the oxidation of Ni2+ ions.When the charge voltage located between 4.6 and 4.8 V,c axis increased while a axis remained almost constant.The fact suggested that some Li+ de-intercalated from the transition metal layer,but the transition metal oxidation states did not change at 4.6-4.8 V.

     

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