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Introducing oxygen vacancies for improving the electrochemical performance of Co9S8@NiCo-LDH nanotube arrays in flexible all-solid battery-capacitor hybrid supercapacitors

delete2022-01-01
delete45
PRE
AI
M
Mengjie Liu
汪磊 cover
汪磊 (Lei Wang)
X
Xin‐Yao Yu
张豪 cover
张豪 (Hao Zhang)
张辉 (Hui Zhang)
S
Shikuo Li *
F
Fangzhi Huang *
DOI:10.1016/j.energy.2021.121767delete
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Abstract

Abstract

En 中文
In this work, rich oxygen vacancies are obtained in Co9S8@NiCo-LDH core-shell nanotube arrays (NTAs), which boost its electrochemical energy storage performance. The flexible carbon cloth (CC) supported Co9S8@NiCo-LDH NTAs are synthesized by situ growth and electrodeposition method. After reacting with NaBH4, the rich oxygen vacancies are generated in NiCo-LDH nanosheets to obtain Co9S8@oxygen vacancies-NiCo-LDH NTAs (Co9S8@OV-NiCo-LDH NTAs). These oxygen vacancies increase the charge transfer rate in the multi-level redox processes and make the electrochemical performance improve sharply. At a current density of 0.5 A g(-1), the mass specific capacity of Co9S8@OV-NiCo-LDH NTAs is up to 1335 C g(-1), which is more than four times higher than that of the untreated Co9S8@NiCo-LDH NTAs. In addition, with the prepared Co9S8@OV-NiCo-LDH core-shell NTAs as a positive electrode, along with the negative electrode of activated carbon (AC), a high-performance flexible all-solid battery-capacitor hybrid supercapacitors (HSC) device is assembled. The maximum energy density is up to 101.1 Wh kg(-1) when the power density is 800 W kg(-1). (C) 2021 Elsevier Ltd. All rights reserved.
Keywords:
Oxygen vacancies
Co9S8@NiCo-LDH nanotube Arrays
Battery-capacitor hybrid supercapacitors
Flexible

Journal

Energy cover
Energy
IF:
9.4
Papers:
4.2W
Citations:
20.2W

Organization

A
anhui university
Scholars:
1.8W
Papers: 1.2W
Citations: 24
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