TY - JOUR
T1 - NiCo2S4/N, S-rGO纳米复合材料的制备和电化学储钠性能
AU - Feng, Xueting
AU - Jiao, Qingze
AU - Li, Qun
AU - Feng, Caihong
AU - Zhao, Yun
AU - Li, Hansheng
AU - Li, Haijun
AU - Cai, Huiqun
N1 - Publisher Copyright:
© 2020, Chemical Industry Press Co., Ltd. All right reserved.
PY - 2020/9/1
Y1 - 2020/9/1
N2 - NiCo2S4 is a promising anode material for sodium ion batteries (SIBs). In this paper, a simple one-step method (mixing and heat treatment) was used to synthesize in-situ synthesized NiCo2S4 submicron spheres (NiCo2S4/N, S-rGO) anchored on N, S co-doped reduced graphene oxide. XPS characterization demonstrated electron transfer between NiCo2S4 and N, S-rGO, which confirmed the strong synergistic effect between NiCo2S4 and N, S-rGO. The nanoparticles self-assembled NiCo2S4 spheres effectively promoted ion diffusion, and the excellent electrical and mechanical properties of N, S-rGO not only improved the conductivity of the electrode, but also effectively buffeted the large volume changes of NiCo2S4/N, S-rGO during the charge/discharge process. Benefiting from the unique nano-architecture and strong synergistic effect, NiCo2S4/N, S-rGO applied as anode materials for SIBs presented a high reversible capacity, impressive rate capability and superior long-term stability (396.7 mA•h/g at 0.5 A/g after 130 cycles, 283.3 mA•h/g at 2 A/g after 1000 cycles). Those results open an interesting strategy for rational design and preparation of efficient anode materials for SIBs.
AB - NiCo2S4 is a promising anode material for sodium ion batteries (SIBs). In this paper, a simple one-step method (mixing and heat treatment) was used to synthesize in-situ synthesized NiCo2S4 submicron spheres (NiCo2S4/N, S-rGO) anchored on N, S co-doped reduced graphene oxide. XPS characterization demonstrated electron transfer between NiCo2S4 and N, S-rGO, which confirmed the strong synergistic effect between NiCo2S4 and N, S-rGO. The nanoparticles self-assembled NiCo2S4 spheres effectively promoted ion diffusion, and the excellent electrical and mechanical properties of N, S-rGO not only improved the conductivity of the electrode, but also effectively buffeted the large volume changes of NiCo2S4/N, S-rGO during the charge/discharge process. Benefiting from the unique nano-architecture and strong synergistic effect, NiCo2S4/N, S-rGO applied as anode materials for SIBs presented a high reversible capacity, impressive rate capability and superior long-term stability (396.7 mA•h/g at 0.5 A/g after 130 cycles, 283.3 mA•h/g at 2 A/g after 1000 cycles). Those results open an interesting strategy for rational design and preparation of efficient anode materials for SIBs.
KW - Anode material
KW - Composites
KW - Electrochemistry
KW - Homogeneous NiCoS spheres
KW - N, S co-doping rGO
KW - Nanomaterials
KW - Sodium ion batteries
UR - http://www.scopus.com/inward/record.url?scp=85091516605&partnerID=8YFLogxK
U2 - 10.11949/0438-1157.20200525
DO - 10.11949/0438-1157.20200525
M3 - 文章
AN - SCOPUS:85091516605
SN - 0438-1157
VL - 71
SP - 4314
EP - 4324
JO - Huagong Xuebao/CIESC Journal
JF - Huagong Xuebao/CIESC Journal
IS - 9
ER -