Controllable Metal–Organic Framework‐Derived NiCo‐Layered Double Hydroxide Nanosheets on Vertical Graphene as Mott–Schottky Heterostructure for High‐Performance Hybrid Supercapacitor

Author:

He Mingliang1,Qiao Jia1,Zhou Binghua1ORCID,Wang Jie1ORCID,Guo Shien1,Melvin Gan Jet Hong2ORCID,Wang Mingxi3,Ogata Hironori4,Kim Yoong Ahm5,Tanemura Masaki6,Wang Shuwen7,Terrones Mauricio78,Endo Morinobu7,Zhang Fei1ORCID,Wang Zhipeng1ORCID

Affiliation:

1. Institute of Advanced Materials, College of Chemistry and Chemical Engineering, State‐Province Joint Engineering Laboratory of Zeolite Membrane Materials, National Engineering Research Center for Carbohydrate Synthesis, Key Lab of Fluorine and Silicon for Energy Materials and Chemistry of Ministry of Education Jiangxi Normal University 99 Ziyang Avenue Nanchang 330022 P. R. China

2. Centre of Research in Energy and Advanced Materials, Faculty of Engineering Universiti Malaysia Sabah Jalan UMS Kota Kinabalu 88400 Sabah Malaysia

3. Key Laboratory for Green Chemical Process of Ministry of Education, School of Chemical and Environmental Engineering Wuhan Institute of Technology Guanggu 1st road Wuhan 430205 P. R. China

4. Department of Chemical Science and Technology, Faculty of Bioscience and Applied chemical and Graduate School of Engineering Hosei University 3‐7‐2, Kajino‐cho Koganei Tokyo 184‐8584 Japan

5. Department of Polymer Engineering, Graduated School & School of Polymer Science and Engineering Chonnam National University 77 Yongbong‐ro, Bukgu Gwangju 500‐757 Republic of Korea

6. Department of Physical Science and Engineering Nagoya Institute of Technology Gokiso‐cho, Showa‐ku Nagoya 466‐8555 Japan

7. Research Initiative for Supra‐Materials, Faculty of Engineering Shinshu University 4‐17‐1 Wakasato Nagano 380‐8553 Japan

8. Department of Physics, Department of Materials Science and Engineering & Materials Research Institute The Pennsylvania State University University Park Pennsylvania 16802 USA

Abstract

Layered double hydroxide (LDH) is considered a highly promising electrode material for supercapacitors (SCs) due to its high theoretical specific capacitance. However, LDH powders often suffer from poor electrical conductivity, structure pulverization, slow charge transport, and insufficient active sites. Herein, a self‐supporting electrode with a Mott–Schottky heterostructure has been designed for high‐performance SCs. The electrode consists of low crystallinity NiCo‐LDH nanosheets and vertical graphene (VG) directly grown on carbon cloth. The LDH was converted from a metal–organic framework (MOF) by the sol–gel method. This self‐supporting electrode provides fast charge transfer, reducing the pulverization effect and energy barrier. The Mott–Schottky heterostructure of LDH@VG regulates electron density and enhances electron transfer, as confirmed by density functional theory calculation. The optimized LDH@VG heterostructure electrode exhibits an excellent areal capacitance of 5513.8 mF cm−2 and rate capability of 82.1%. Furthermore, the fabricated hybrid SC demonstrates excellent energy density of 404.8 μWh cm−2 at 1.6 mW cm−2 and a remarkable cycling life, with a capacitance of 92.0% after 10 000 cycles. This work not only provides a simple dip‐coating and MOF conversion method to synthesize heterojunction‐based electrodes, but also broadens the horizon for designing advanced electrode materials for SCs.

Funder

National Natural Science Foundation of China

Science Fund for Distinguished Young Scholars of Jiangxi Province

Natural Science Foundation of Jiangxi Province

Jiangsu Provincial Department of Education

Publisher

Wiley

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