首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Functionality of oxide coating for Li[Li0.05Ni0.4Co0.15Mn0.4]O-2 as positive electrode materials for lithium-ion secondary batteries
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Functionality of oxide coating for Li[Li0.05Ni0.4Co0.15Mn0.4]O-2 as positive electrode materials for lithium-ion secondary batteries

机译:Li [Li0.05Ni0.4Co0.15Mn0.4] O-2用作锂离子二次电池正极材料的氧化物涂层的功能

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Surface-modified Li[Li0.05Ni0.4Co0.15Mn0.4]O-2 oxides were studied. The oxide particles were coated by heteroelements such as Al2O3, Nb2O5, Ta2O5, ZrO2 and ZnO. Metal oxide-coated Li[Li0.05Ni0.4Co0.15Mn0.4]O-2 did not show significant difference in X-ray diffraction patterns. Thickness of the formed coating layer was around 10 nm, as observed by transmission electron microscopy. Electrochemical properties of heteroelementcoated Li[Li0.05Ni0.4Co0.15Mn0.4]O-2 were investigated using coin type Li-ion cells employing graphite as an anode at 60 degrees C. Metal oxide-coated Li[Li0.05Ni0.4Co0.15Mn0.4]O-2 obviously showed higher capacity with good cyclability. Also, area-specific impedance was significantly lower for the metal oxide-coated Li[Li0.05Ni0.4Co0.15Mn0.4]O-2 during cycling, compared with that for bare Li[Li0.05Ni0.4Co0.15Mn0.4]O-2. Among them, Al2O3 coated Li [Li0.05Ni0.4Co0.15Mn0.4]O-2 had the best electrochemical performances. The metal oxide coating layer transformed to metal fluoride layer during cycling, as proved by time-of-flight-secondary ion mass spectroscopy. The newly formed metal fluoride layer would be greatly effective against HF attack during cycling. Possible reasons for the effectiveness of the metal oxide coating are discussed.
机译:研究了表面改性的Li [Li0.05Ni0.4Co0.15Mn0.4] O-2氧化物。氧化物颗粒被Al2O3,Nb2O5,Ta2O5,ZrO2和ZnO等杂元素覆盖。涂有金属氧化物的Li [Li0.05Ni0.4Co0.15Mn0.4] O-2在X射线衍射图中没有显着差异。通过透射电子显微镜观察,所形成的涂层的厚度为约10nm。使用硬币型锂离子电池,在60摄氏度以石墨为阳极,研究了杂元素包覆的Li [Li0.05Ni0.4Co0.15Mn0.4] O-2的电化学性能。金属氧化物包覆的Li [Li0.05Ni0.4Co0]。 15Mn0.4] O-2明显表现出较高的容量,并具有良好的循环性。此外,与裸露的Li [Li0.05Ni0.4Co0.15Mn0.4]相比,金属氧化物包覆的Li [Li0.05Ni0.4Co0.15Mn0.4] O-2在循环过程中的面积比阻抗显着降低。 O-2。其中,Al2O3包覆的Li [Li0.05Ni0.4Co0.15Mn0.4] O-2具有最佳的电化学性能。如飞行时间二次离子质谱法所证明,在循环过程中,金属氧化物涂层转变为金属氟化物层。新形成的金属氟化物层将在循环过程中非常有效地抵抗HF侵蚀。讨论了金属氧化物涂层有效的可能原因。

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