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Li/Fe substitution in Li-rich Ni, Co, Mn oxides for enhanced electrochemical performance as cathode materials
被引:37
作者:
Billaud, Juliette
[1
]
Sheptyakov, Denis
[2
]
Sallard, Sebastien
[1
,3
]
Leanza, Daniela
[1
]
Talianker, Michael
[4
]
Grinblat, Judith
[5
]
Sclar, Hadar
[5
]
Aurbach, Doron
[5
]
Novak, Petr
[1
]
Villevieille, Claire
[1
]
机构:
[1] Paul Scherrer Inst, Energy & Environm Res Div, CH-5232 Villigen, Switzerland
[2] Paul Scherrer Inst, Lab Neutron Scattering & Imaging, CH-5232 Villigen, Switzerland
[3] Flemish Inst Technol Res VITO, Bat MAT,Boeretang 200, B-2400 Mol, Belgium
[4] Ben Gurion Univ Negev, Dept Mat Engn, IL-84105 Beer Sheva, Israel
[5] Bar Ilan Univ, Dept Chem, IL-52900 Ramat Gan, Israel
关键词:
SITU X-RAY;
LAYERED OXIDES;
CYCLING STABILITY;
ANIONIC REDOX;
LITHIUM BATTERIES;
OXYGEN RELEASE;
ELECTRODES;
CAPACITY;
SURFACE;
LI2MNO3;
D O I:
10.1039/c9ta00399a
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Li-rich nickel cobalt manganese (NCM) oxides are among the most promising cathode materials for lithium-ion batteries owing to their high specific charges and operating voltages. However, their crystal structures are unstable upon prolonged cycling, leading to a collapse of their electrochemical performance. In this study, we investigated Fe doping of Li-rich NCM materials and explored various Li/Fe ratios. Compared with the reference Li-rich NCM material, the Li-1.16(Ni0.18Co0.10Mn0.52Fe0.02)O-2 composition exhibited a higher specific charge, potential drop mitigation at fast cycling rates, and an enhanced rate capability. At a rate of 4C, this composition exhibited a specific charge of 150 mA h g(-1), which was as much as 50% higher than that of the reference (100 mA h g(-1)). Neutron and X-ray diffraction data for compounds with different Fe doping concentrations indicated that the crystallographic structure was preserved with up to 2 mol% Fe without the formation of separate impurity phases. Furthermore, we found that the crystal structure of this Fe-doped material was less susceptible to the effects of prolonged cycling than the reference compound. Complementary investigations with X-ray photoelectron spectroscopy revealed that Fe was electrochemically active in the structure, which explains the beneficial effects observed with Fe doping of Li-rich NCM materials, such as an increased specific charge and more stable cycling.
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页码:15215 / 15224
页数:10
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