超级电容器
材料科学
电容感应
水平扫描速率
化学工程
气凝胶
多孔介质
纳米技术
多孔性
电容
电极
碳纤维
复合材料
电化学
循环伏安法
化学
复合数
电气工程
工程类
物理化学
作者
Bin Yao,Huarong Peng,Haozhe Zhang,Junzhe Kang,Cheng Zhu,Gerardo Torres Delgado,Dana O. Byrne,Soren Faulkner,Megan C. Freyman,Xihong Lu,Marcus A. Worsley,Jennifer Lu,Yat Li
出处
期刊:Nano Letters
[American Chemical Society]
日期:2021-03-10
卷期号:21 (9): 3731-3737
被引量:141
标识
DOI:10.1021/acs.nanolett.0c04780
摘要
Maintaining fast charging capability at low temperatures represents a significant challenge for supercapacitors. The performance of conventional porous carbon electrodes often deteriorates quickly with the decrease of temperature due to sluggish ion and charge transport. Here we fabricate a 3D-printed multiscale porous carbon aerogel (3D-MCA) via a unique combination of chemical methods and the direct ink writing technique. 3D-MCA has an open porous structure with a large surface area of ∼1750 m2 g–1. At −70 °C, the symmetric device achieves outstanding capacitance of 148.6 F g–1 at 5 mV s–1. Significantly, it retains a capacitance of 71.4 F g–1 at a high scan rate of 200 mV s–1, which is 6.5 times higher than the non-3D printed MCA. These values rank among the best results reported for low temperature supercapacitors. These impressive results highlight the essential role of open porous structures for preserving capacitive performance at ultralow temperatures.
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