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Regenerable Cu-intercalated MnO2 layered cathode for highly cyclable energy dense batteries
被引:248
作者:
Yadav, Gautam G.
[1
]
Gallaway, Joshua W.
[1
]
Turney, Damon E.
[1
]
Nyce, Michael
[1
]
Huang, Jinchao
[1
]
Wei, Xia
[1
]
Banerjee, Sanjoy
[1
]
机构:
[1] CUNY City Coll, CUNY Energy Inst, Dept Chem Engn, Steinman Hall,140th St & 160 Convent Ave,Room 316, New York, NY 10031 USA
关键词:
MANGANESE OXIDE ELECTRODES;
BI(NO3)(3) MIXTURES;
DIOXIDE ELECTRODE;
COPPER BIRNESSITE;
DISSOLVED KMNO4;
ALKALINE;
RECHARGEABILITY;
DISCHARGE;
GAMMA-MNO2;
MECHANISM;
D O I:
10.1038/ncomms14424
中图分类号:
O [数理科学和化学];
P [天文学、地球科学];
Q [生物科学];
N [自然科学总论];
学科分类号:
07 ;
0710 ;
09 ;
摘要:
Manganese dioxide cathodes are inexpensive and have high theoretical capacity (based on two electrons) of 617 mAhg(-1), making them attractive for low-cost, energy-dense batteries. They are used in non-rechargeable batteries with anodes like zinc. Only similar to 10% of the theoretical capacity is currently accessible in rechargeable alkaline systems. Attempts to access the full capacity using additives have been unsuccessful. We report a class of Bi-birnessite (a layered manganese oxide polymorph mixed with bismuth oxide (Bi2O3)) cathodes intercalated with Cu2+ that deliver near-full two-electron capacity reversibly for >6,000 cycles. The key to rechargeability lies in exploiting the redox potentials of Cu to reversibly intercalate into the Bi-birnessite-layered structure during its dissolution and precipitation process for stabilizing and enhancing its charge transfer characteristics. This process holds promise for other applications like catalysis and intercalation of metal ions into layered structures. A large prismatic rechargeable Zn-birnessite cell delivering similar to 140 Whl(-1) is shown.
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