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Optimization of synthesis condition of water-resistant and thin titanium oxide layer-coated Ni-rich layered cathode materials and their cathode performance

机译:耐水薄氧化钛层涂层掺杂Ni的层状阴极材料的合成条件优化及其阴极性能

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摘要

In this study, in order to develop water-resistant LiNiaCobAl1-a-bO2 (a0.85, NCA) cathode materials which exhibit high-rate performance, the surface coating of NCA with titanium oxide (TiOx) was examined. The synthesis conditions for the TiOx-coated NCA cathode materials were investigated, by taking into account some essential factors in the surface coating of NCA by TiOx, with a view to improving the rate performance. We successfully prepared the TiOx-coated NCA cathode material, the rate performance of which is superior to that of the conventionally prepared NCA cathode materials, typically using a polyvinylidene difluoride (PVdF) binder and N-methyl-2-pyrrolidone (NMP) solvent. Their surface analysis suggested that the specific surface structure of TiOx layer coated on the NCA particle leads to both a water-resistant property and a high permeability of Li+ ions through it in the charging/discharging process.
机译:在该研究中,为了开发出具有高速率性能的耐水性LiniacoBal1-A-Bo2(A& 0.85,NCA)阴极材料,检查NCA与氧化钛(TiOx)的表面涂层。 研究了TiOx涂覆的NCA阴极材料的合成条件,考虑到TiOx的NCA表面涂层中的一些基本因素,以提高速率性能。 我们成功地制备了TiOx涂覆的NCA阴极材料,其速率性能优于常规制备的NCA阴极材料的速率性能,通常使用聚偏二氟化乙烯(PVDF)粘合剂和N-甲基-2-吡咯烷酮(NMP)溶剂。 它们的表面分析表明,在NCA颗粒上涂覆在NCA粒子上的TiOx层的比表面结构导致耐水性和通过其在充电/放电过程中通过它的高渗透性和高渗透性。

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