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Novel and highly efficient cathodes for Li-O2 batteries: 3D self-standing NiFe@NC-functionalized N-doped carbon nanonet derived from Prussian blue analogues/biomass composites

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Autor
Jing S., Zhang Y., Chen F., Liang H., Yin S., Tsiakaras P.
Fecha
2019
Language
en
DOI
10.1016/j.apcatb.2019.01.032
Materia
Carbon
Carbonization
Catalyst activity
Cathodes
Doping (additives)
Electrolytic reduction
Iron compounds
Lithium batteries
Lithium compounds
Nickel compounds
Oxygen
Reaction rates
Carbonization process
Derived carbons
Evolution reactions
High specific capacity
Oxygen reduction reaction
Preparation process
Prussian blue analogues
Self standings
Lithium-air batteries
Elsevier B.V.
Mostrar el registro completo del ítem
Resumen
Traditional 3D self-standing electrodes for lithium-oxygen (Li-O2) batteries require a high cost and complex preparation process that restrict their development. Herein, discarded biomass (pomelo peel, PP) is used as raw material and in-situ grew NiFe-Prussian blue analogues on its surface. Then a novel 3D binder-free and self-standing NiFe@NC/PPC electrode is obtained through the carbonization process and directly used as a cathode in Li-O2 batteries. Compared with PPC (carbonized pomelo peel) and NiFe@NC/CP (NiFe@NC catalysts coated on carbon paper), NiFe@NC/PPC gathered the advantageous characteristics of i) efficient diffusion rates for O2/electrolyte and ii) good catalytic activity for oxygen reduction reaction/oxygen evolution reaction (ORR/OER). The as fabricated Li-O2 batteries, with NiFe@NC/PPC as cathode, are performed a relatively high specific capacity (13.79 mAh cm−2), a long cycle life (290 cycles) at a current density of 0.1 mA cm−2. Therefore, considering the convenience of synthesis method and the inexpensive raw materials, this is a feasible way to prepare high performance and low cost cathodes for Li-O2 batteries. © 2019 Elsevier B.V.
URI
http://hdl.handle.net/11615/74120
Colecciones
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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