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Progress in Chemistry
Progress in Chemistry
Abbreviation (ISO4):
Prog Chem
Editor in chief:
Jincai ZHAO
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Figure/Table detail
Preparation of Heteroatom Doped Graphene and Its Application as Electrode Materials for Supercapacitors
Yunpeng Wu, Xiaofeng Wang, Benxian Li, Xudong Zhao, Xiaoyang Liu
Prog Chem
, 2023, 35(
7
): 1005-1017. DOI:
10.7536/PC220811
Fig.4
Schematic of the preparation of (a) nitrogen doping graphene, and (b) phosphorus doping graphene by elemental superdoping
[
56
,
57
]
Copyright 2019, American Chemical Society; 2016, Springer
Other figure/table from this article
Fig.1
Trends in the amount of articles published about heteroatom-doped graphene
Fig.2
(a) Schematic illustration of the preparation process of NiNOG; (b) SEM image of NiNOG; (c) XPS spectra of NiNOG
[
40
]
. Copyright 2022, Elsevier
Fig.3
Schematic illustration of the hydrothermal treatment of GO coated MS in different conditions
[
49
]
. Copyright 2020, Chinese Chemical Society
Fig.5
(a) Composition of a supercapacitor; (b, c) schematic of the charge storage mechanism of EDLC and PC
Fig.6
Schematic structures of N-6, N-5 and N-Q
Fig.7
BC
3
、BC
2
O和BCO
2
的结构示意图
Schematic structures of BC
3
、BC
2
O和BCO
2
Fig.8
Schematic diagram of phosphorus-containing structure in phosphorus-doped graphene
Fig.9
(a) SEM image of PGA; (b) cycle stability of PGA electrode at 1 A/g (Inset: CV profile for 1st and 10 000th cycle)
[
73
]
. Copyright 2020, ESG
Fig.10
Schematic diagram of Sulfur-containing structure in sulfur-doped graphene
Fig.11
Species and characteristics of doped atoms
Table 1
Performance of heteroatom-doped graphene as electrode materials for supercapacitors