材料科学
超级电容器
制作
化学工程
纳米技术
多孔性
储能
热液循环
比表面积
电极
功率密度
光电子学
复合材料
电化学
物理化学
功率(物理)
催化作用
量子力学
病理
生物化学
替代医学
物理
医学
化学
工程类
作者
Jayaraman Balamurugan,Chao Li,Vanchiappan Aravindan,Nam Hoon Kim,Joong Hee Lee
标识
DOI:10.1002/adfm.201803287
摘要
Abstract Highly flexible supercapacitors (SCs) have great potential in modern electronics such as wearable and portable devices. However, ultralow specific capacity and low operating potential window limit their practical applications. Herein, a new strategy for the fabrication of free‐standing NiMoS and NiFeS nanosheets (NSs) for high‐performance flexible asymmetric SC (ASC) through hydrothermal and subsequent sulfurization technique is reported. The effect of Ni 2+ is optimized to attain hierarchical NiMoS and NiFeS NS architectures with high electrical conductivity, large surface area, and exclusive porous networks. Electrochemical properties of NiMoS and NiFeS NS electrodes exhibit that both have ultrahigh specific capacities (≈312 and 246 mAh g −1 at 1 mA cm −2 ), exceptional rate capabilities (78.85% and 78.46% capacity retention even at 50 mA cm −2 , respectively), and superior cycling stabilities. Most importantly, a flexible NiMoS NS//NiFeS NS ASC delivers a high volumetric capacity of ≈1.9 mAh cm −3 , excellent energy density of ≈82.13 Wh kg −1 at 0.561 kW kg −1 , exceptional power density (≈13.103 kW kg −1 at 61.51 Wh kg −1 ) and an outstanding cycling stability, retaining ≈95.86% of initial capacity after 10 000 cycles. This study emphasizes the potential importance of compositional tunability of the NS architecture as a novel strategy for enhancing the charge storage properties of active electrodes.
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