TY - JOUR
T1 - One novel and universal method to prepare transition metal nitrides doped graphene anodes for Li-ion battery
AU - Lai, Linfei
AU - Zhu, Jixin
AU - Li, Baosheng
AU - Zhen, Yongda
AU - Shen, Zexiang
AU - Yan, Qingyu
AU - Lin, Jianyi
PY - 2014/7/10
Y1 - 2014/7/10
N2 - Transition metal nitrides (TMN)/N modified graphene (N-rG-O) composites are prepared by annealing of Metaln+-EN (EN: ethylene diamine) chelate and G-O composite. Li-storage and cycling behavior of TMN/N-rG-O composite have been evaluated by galvanostatic discharge-charge and cyclic voltammetry in coin cells with Li-metal as counter electrode. FeN/N-rG-O, CoN/N-rG-O, FeCoN/N-rG-O, NiN/N-rG-O are prepared using this method, and all have shown pronounced cyclability and considerable high capacity value. Even a low loading of TMN (12.5% ±2.0%) on graphene can significantly improve the Li-ion storage capacity of graphene. For example, FeN/N-rG-O with FeN weight ratio of only 12.5% has an initial reversible capacity of 665 ± 10 mAhg-1 at a current density of 50 mA g-1, and the capacity value further increase consistently to 698 ±10 mAhg-1 after 50 cycles. The excellent cyclability, low charge/discharge potentials (<1.5 V), high reversible capacity values of TMN/N-RG-O indicate they are prospective anodes for Li-ion batteries.
AB - Transition metal nitrides (TMN)/N modified graphene (N-rG-O) composites are prepared by annealing of Metaln+-EN (EN: ethylene diamine) chelate and G-O composite. Li-storage and cycling behavior of TMN/N-rG-O composite have been evaluated by galvanostatic discharge-charge and cyclic voltammetry in coin cells with Li-metal as counter electrode. FeN/N-rG-O, CoN/N-rG-O, FeCoN/N-rG-O, NiN/N-rG-O are prepared using this method, and all have shown pronounced cyclability and considerable high capacity value. Even a low loading of TMN (12.5% ±2.0%) on graphene can significantly improve the Li-ion storage capacity of graphene. For example, FeN/N-rG-O with FeN weight ratio of only 12.5% has an initial reversible capacity of 665 ± 10 mAhg-1 at a current density of 50 mA g-1, and the capacity value further increase consistently to 698 ±10 mAhg-1 after 50 cycles. The excellent cyclability, low charge/discharge potentials (<1.5 V), high reversible capacity values of TMN/N-RG-O indicate they are prospective anodes for Li-ion batteries.
KW - Graphene oxide
KW - Lithium ion battery
KW - Transition metal nitride
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U2 - 10.1016/j.electacta.2014.04.073
DO - 10.1016/j.electacta.2014.04.073
M3 - Article
AN - SCOPUS:84900437890
SN - 0013-4686
VL - 134
SP - 28
EP - 34
JO - Electrochimica Acta
JF - Electrochimica Acta
ER -