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首页> 外文期刊>ACS applied materials & interfaces >Regulating Anion Redox and Cation Migration to Enhance the Structural Stability of Li-Rich Layered Oxides
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Regulating Anion Redox and Cation Migration to Enhance the Structural Stability of Li-Rich Layered Oxides

机译:调节阴离子氧化还原和阳离子迁移,提高富富含量的层状氧化物的结构稳定性

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摘要

Lithium-rich manganese-based layered oxide cathodes (LLOs) with oxygen redox reactions are considered to be potential candidates for the next generation of high-energy-density Li-ion batteries. However, the oxygen redox process that enables ultrahigh specific capacity usually leads to irreversible O_(2) release and cation migration, which induce structure degradation and severe capacity/voltage losses and thus limit the commercial application of LLOs. Herein, we successfully synthesized chlorine (Cl)-doped Co-free LLOs (Li_(1.2)Mn_(0.53)Ni_(0.27)O_(1.976)Cl_(0.024)) and analyzed the effect of anion doping on oxygen redox and structure stability of LLOs. Cl doping has been proven to decrease the irreversible lattice oxygen loss to enhance the redox reversibility of oxygen and inhibit the transition-metal migration during cycles, which substantially enhances the capacity and voltage retention and improves the rate capability during cycling. This work provides new insights for the development of high-performance TM oxide cathode materials with reversible oxygen redox.
机译:具有氧氧化还原反应的富锂锰基层状氧化物阴极(LLO)被认为是下一代高能量密度锂离子电池的潜在候选材料。然而,超高比容量的氧氧化还原过程通常会导致不可逆的O_2释放和阳离子迁移,导致结构退化和严重的容量/电压损失,从而限制了LLO的商业应用。在此,我们成功地合成了氯掺杂的无钴LLO(Li_(1.2)Mn_(0.53)Ni_(0.27)O_(1.976)Cl_(0.024)),并分析了阴离子掺杂对LLO氧氧化还原和结构稳定性的影响。Cl掺杂可以降低不可逆晶格氧损失,提高氧的氧化还原可逆性,抑制循环过程中过渡金属的迁移,从而显著提高循环过程中的容量和电压保持率,提高循环过程中的速率容量。这项工作为开发具有可逆氧氧化还原的高性能氧化钛阴极材料提供了新的见解。

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