A novel sodium-ion supercabattery based on vacancy defective Ni-Co-Mn ternary perovskite fluoride electrode materials
In this work, we have proposed a new concept of sodium-ion supercabatteries ( i.e. , sodium-ion capacitors/batteries, SICBs) based on a novel vacancy defective Ni-Co-Mn ternary perovskite fluoride K 0.71 Ni 0.12 Co 0.41 Mn 0.47 F 2.77 /reduced graphene oxide ( i.e. , KMF(244)/rGO) anode and a capaci...
Saved in:
Published in | Journal of materials chemistry. A, Materials for energy and sustainability Vol. 9; no. 25; pp. 14276 - 14284 |
---|---|
Main Authors | , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Cambridge
Royal Society of Chemistry
07.07.2021
|
Subjects | |
Online Access | Get full text |
Cover
Loading…
Summary: | In this work, we have proposed a new concept of sodium-ion supercabatteries (
i.e.
, sodium-ion capacitors/batteries, SICBs) based on a novel vacancy defective Ni-Co-Mn ternary perovskite fluoride K
0.71
Ni
0.12
Co
0.41
Mn
0.47
F
2.77
/reduced graphene oxide (
i.e.
, KMF(244)/rGO) anode and a capacitor/battery (activated carbon/Na
3
V
2
(PO
4
)
2
O
2
F,
i.e.
, AC/NVPOF) hybrid cathode, which reduce the gap between sodium-ion capacitors (SICs) and sodium-ion batteries (SIBs). The KMF(244)/rGO anode, with the synergistic effect of Ni, Co, and Mn redox species and K/F vacancy defects, presents remarkable specific capacity, rate and cycle performance, showing pseudocapacitive-dominated conversion/intercalation dual mechanisms. Interestingly, the KMF(244)/rGO//AC/NVPOF SICBs exhibit superior performance to KMF(244)/rGO//AC SICs and KMF(244)/rGO//NVPOF SIBs, which largely benefits from the synergistic energy storage superiority of SICs and SIBs showing pseudocapacitive, capacitive, and faradaic behavior in electrochemical processes. To sum up, our study presents a novel concept of sodium-ion supercabatteries realized by using the vacancy defective Ni-Co-Mn ternary perovskite fluoride anode with pseudocapacitive-dominated conversion/intercalation dual mechanisms and an AC/NVPOF capacitor/battery hybrid cathode, providing new insight into developing advanced energy storage devices and in-depth understanding of the charge storage mechanisms.
Proposal of a new concept of sodium-ion supercabatteries based on a novel vacancy defective Ni-Co-Mn ternary perovskite fluoride K
0.71
Ni
0.12
Co
0.41
Mn
0.47
F
2.77
/rGO anode and an activated carbon/Na
3
V
2
(PO
4
)
2
O
2
F hybrid cathode. |
---|---|
Bibliography: | Electronic supplementary information (ESI) available. See DOI 10.1039/d1ta02894d |
ISSN: | 2050-7488 2050-7496 |
DOI: | 10.1039/d1ta02894d |