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聚丙烯酸辅助合成用于锌离子电池的自支撑MnO/CNTs阴极。

Polyacrylic acid assisted synthesis of free-standing MnO/CNTs cathode for Zinc-ion batteries.

作者信息

Zhang Jiyan, Huang Yuan, Li Zixuan, Gao Chenxi, Jin Shunyu, Zhang Shengdong, Wang Xiaozhi, Zhou Hang

机构信息

School of Electronic and Computer Engineering, Peking University Shenzhen Graduate School, Shenzhen 518055, People's Republic of China.

出版信息

Nanotechnology. 2020 Sep 11;31(37):375401. doi: 10.1088/1361-6528/ab9866. Epub 2020 Jun 1.

Abstract

Rechargeable aqueous zinc-ion batteries (ZIBs) have attracted significant attention due to the distinguishing characteristics of zinc metal, including its low price, abundance in earth, safety and high theoretical specific capacity of 820 mAh g. Manganese dioxide (MnO) is a promising cathode for ZIBs due to high theoretical specific capacity, high discharge voltage plateau, cost-effectiveness and nontoxicity. However, the low electronic conductivity and volumetric changes during electrochemical cycling hinder its practical utilization. Herein, we demonstrate a polyacrylic acid (PAA)-assisted assembling strategy to fabricate freestanding and flexible MnO/carbon nanotube/PAA (MnO/CNT/PAA) cathodes for ZIBs. PAA plays an important role in providing excellent mechanical properties to the free-standing electrode. Moreover, the presence of CNT forms an electron conductive network, and the porous structure of MnO/CNT/PAA electrode accommodates the volumetric variations of MnO during charge/discharge cycling. The as-fabricated quasi-solid-state Zn-MnO/CNT/PAA battery delivers a high charge storage capacity of 302 mAh g at 0.3 A g and retains 82% of the initial capacity after 1000 charge/discharge cycles at 1.5 A g. The calculated volumetric energy density of Zn-MnO/CNT/PAA battery is 8.5 mW h cm (with a thickness of 0.08 cm), which is significantly higher than the reported alkali-ion batteries (1.3 mW h cm) and comparable to supercapacitors (6.8 mW h cm) and Ni-Zn batteries (7.76 mW h cm). The current work demonstrates that free-standing MnO/CNT/PAA composite is a promising cathode for ZIBs.

摘要

可充电水系锌离子电池(ZIBs)因其锌金属的独特特性而备受关注,这些特性包括价格低廉、在地壳中储量丰富、安全性高以及理论比容量高达820 mAh g。二氧化锰(MnO)由于具有高理论比容量、高放电电压平台、成本效益高和无毒等优点,是一种很有前景的ZIBs正极材料。然而,其低电子导电性以及在电化学循环过程中的体积变化阻碍了它的实际应用。在此,我们展示了一种聚丙烯酸(PAA)辅助组装策略,用于制备用于ZIBs的独立且柔性的MnO/碳纳米管/PAA(MnO/CNT/PAA)正极。PAA在为独立电极提供优异机械性能方面发挥着重要作用。此外,碳纳米管的存在形成了一个电子导电网络,并且MnO/CNT/PAA电极的多孔结构能够适应MnO在充放电循环过程中的体积变化。所制备的准固态Zn-MnO/CNT/PAA电池在0.3 A g电流密度下具有302 mAh g的高电荷存储容量,并且在1.5 A g电流密度下经过1000次充放电循环后仍保留初始容量的82%。计算得出的Zn-MnO/CNT/PAA电池的体积能量密度为8.5 mW h cm(厚度为0.08 cm),这显著高于已报道的碱离子电池(1.3 mW h cm),并与超级电容器(6.8 mW h cm)和镍锌电池(7.76 mW h cm)相当。当前的工作表明,独立的MnO/CNT/PAA复合材料是一种很有前景的ZIBs正极材料。

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