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...

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Published inJournal of materials chemistry. A, Materials for energy and sustainability Vol. 9; no. 25; pp. 14276 - 14284
Main Authors Yan, Tong, Ding, Rui, Huang, Yongfa, Ying, Danfeng, Tan, Caini, Huang, Yuxi, Yang, Feng, Sun, Xiujuan, Gao, Ping, Liu, Enhui
Format Journal Article
LanguageEnglish
Published Cambridge Royal Society of Chemistry 07.07.2021
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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