材料科学
超级电容器
石墨烯
异质结
氧化物
接口(物质)
分子
纳米技术
光电子学
化学工程
电化学
电极
复合材料
有机化学
物理化学
化学
冶金
工程类
毛细管作用
毛细管数
作者
Yi Zhang,Weixing Feng,Mingzhu Ma,Nan Zhang,Jie Ru,Xin Wang,Yongxing Zhang,Xuebin Zhu,Yongxing Zhang,Xuebin Zhu
标识
DOI:10.1016/j.surfin.2024.104373
摘要
Organic molecule intercalation and heterostructure construction can optimize the capacitive storage of MoS2. To begin with, we choose MoO3 as the molybdenum source and polypyrrole (PPy) as the intercalation agent to synthesize the enlarged interlayer spacing MoS2 (MoS2-PPy). On this basis, MoS2-PPy@reduced graphene oxide (rGO) heterostructures are eventually fabricated. The electrochemical merits of rGO and MoS2-PPy can be combined through synergistic effects among the heterostructure. What's more, to examine the kinetics storage mechanisms of MoS2 samples, density functional theory (DFT) calculations have been done. It turns out the introduction of rGO enhanced the polarity of MoS2, which lead to stronger interface energy and additional capacitance. Additionally, for the involvement of rGO, the conductivity has been effectually elevated. Moreover, an AC//MoS2-PPy@rGO asymmetric flexible device is assembled, and it have an excellent energy density of 134.4 µWh cm−2 at a power density of 800 µW cm−2. This work paves the way for constructing organic-molecular intercalated-MoS2 based heterostructures in capacitive energy storage.
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