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Polyaniline Nanocoating on the Surface of Layered Li[Li0.2Co0.1Mn0.7]O2 Nanodisks and Enhanced Cyclability as a Cathode Electrode for Rechargeable Lithium-Ion Battery
被引:38
作者:
Ahn, Docheon
[1
,2
]
Koo, Yang-Mo
[2
]
Kim, Min Gyu
[1
]
Shin, Namsoo
[1
]
Park, Jaehun
[1
]
Eom, Junho
[3
]
Cho, Jaephil
[3
]
Shin, Tae Joo
[1
]
机构:
[1] Pohang Accelerator Lab, Pohang 790784, South Korea
[2] POSTECH, Dept Mat Sci & Engn, Pohang 790784, South Korea
[3] UNIST, Sch Energy Engn, Ulsan 689798, South Korea
关键词:
MANGANESE OXIDE NANOCOMPOSITE;
STRUCTURAL-CHARACTERIZATION;
ELECTROCHEMICAL PERFORMANCE;
CRYSTALLIZATION PROCESS;
ANODIC-OXIDATION;
MNO2;
NANOSHEETS;
POLYMERIZATION;
ANILINE;
POLY(ETHYLENE-2,6-NAPHTHALATE);
INTERCALATION;
D O I:
10.1021/jp9095437
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:
The surfaces of layer-structured Li[Li0.2Co0.1Mn0.7]O-2 nanodisks were nanocoated with polyaniline and examined by SEM and TEM studies, via the chemical oxidative polymerization of aniline in an acid medium for 10 min-Mn4+ ions in the pristine lithium manganese oxides acted as oxidants. During this reaction, the crystal structure of the pristine nanodisks was retained, and the XRD patterns showed no evidence of H+ exchange with the Li+ located between the manganese oxide layers. The nanocoated polyaniline was in the low molecular weight of base states, and the majority (similar to 70%) was complexed with Li[Li0.2Co0.1Mn0.7]O-2 nanodisks, as shown by UV-vis and FT-IR spectroscopic analysis. By application of nanocoated polyaniline nanodisks as the cathode material, the discharge capacity was improved by about 15%. Furthermore. the cyclability was enhanced with almost no change in discharge capacity being detected at extended cycle numbers, while that of pristine nanodisks showed a tendency to continually decrease as the number of cycles increased. Results from the present Study Suggest that a well-controlled polyaniline nanocoating, particularly formed with the aid of pristine metal oxides as oxidants for polymerization, call act as a potential buffer layer between electrodes and electrolytes, which makes this a promising method for the reducing/protection of Continuous Structural distortion that Occurs during extended charge-discharge cycling.
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页码:3675 / 3680
页数:6
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