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用于太阳能供电储能系统的混合微型超级电容器的简便组装

Facile Assembly of Hybrid Micro-Supercapacitors for a Sunlight-Powered Energy Storage System.

作者信息

Li Min, Jia Chen, Zhang Danyu, Luo Yunyun, Wang Lu, Yang Ping, Luo Guoxi, Zhao Libo, Boukherroub Rabah, Jiang Zhuangde

机构信息

State Key Laboratory for Manufacturing Systems Engineering, International Joint Laboratory for Micro/Nano Manufacturing and Measurement Technologies, Xi'an Jiaotong University (Yantai) Research Institute for Intelligent Sensing Technology and System, Xi'an Jiaotong University, Xi'an710049, China.

School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an710049, China.

出版信息

ACS Appl Mater Interfaces. 2022 Oct 26;14(42):47595-47604. doi: 10.1021/acsami.2c11890. Epub 2022 Oct 14.

Abstract

Herein, hybrid micro-supercapacitors (MSCs), consisting of positive CoNi layer double hydroxides (LDHs) decorated on carbon nanotubes (CoNi LDHs@CNTs) and negative CNT electrodes, were assembled by facile drop-coated and electrodeposition methods. The as-fabricated MSCs were optimized in view of electrochemical performance, and the CoNi LDHs-2@CNTs//CNT MSC exhibited a favorable performance and was thus chosen to be the candidate for MSC device package. The packaged CoNi LDHs-2@CNTs//CNT MSC demonstrated a large areal capacitance of 11.0 mF·cm at a current density of 0.08 mA·cm, a good rate performance (56% areal capacitance retained at a higher current density of 0.4 mA·cm), and a favorable cycling stability and reversibility (92% of the original areal capacitance was retained after 5000 cycles). Furthermore, the MSC device recorded an energy density of 1.5 μWh·cm at a power density of 42.5 μW·cm and was successfully applied for the storage of energy supplied by solar cells to operate a red light-emitting diode. All these findings demonstrated the promising practical energy storage application of the as-fabricated hybrid MSC devices in the construction of sunlight-powered energy storage systems.

摘要

在此,通过简便的滴涂和电沉积方法组装了混合微型超级电容器(MSC),其由装饰在碳纳米管上的正钴镍层状双氢氧化物(LDH)(CoNi LDHs@CNTs)和负碳纳米管电极组成。鉴于电化学性能对所制备的MSC进行了优化,CoNi LDHs-2@CNTs//CNT MSC表现出良好的性能,因此被选为MSC器件封装的候选材料。封装后的CoNi LDHs-2@CNTs//CNT MSC在电流密度为0.08 mA·cm时表现出11.0 mF·cm的大面电容、良好的倍率性能(在较高电流密度0.4 mA·cm时保留56%的面电容)以及良好的循环稳定性和可逆性(5000次循环后保留92%的原始面电容)。此外,该MSC器件在功率密度为42.5 μW·cm时记录的能量密度为1.5 μWh·cm,并成功应用于存储太阳能电池提供的能量以驱动红色发光二极管。所有这些发现表明,所制备的混合MSC器件在构建太阳能供电的能量存储系统方面具有广阔的实际储能应用前景。

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