材料科学
焦耳加热
石墨烯
电流
焦耳(编程语言)
电场
纤维
制作
电流(流体)
复合材料
光电子学
纳米技术
电加热
电气工程
病理
工程类
物理
替代医学
医学
量子力学
高效能源利用
作者
Yi Cheng,Guang Cui,Changhao Liu,Zhetong Liu,Longge Yan,Bingyao Liu,Hao Yuan,Pengcheng Shi,Jun Jiang,Kewen Huang,Kun Wang,Shuting Cheng,Junliang Li,Peng Gao,Xinfang Zhang,Yue Qi,Zhongfan Liu
标识
DOI:10.1002/adfm.202103493
摘要
Abstract Joule heating is featured with an extremely high rising rate of temperature with hundreds of kelvin per second, which has shown superiorities of high efficiency and energy conservation in graphene fabrication. Herein, we design a dynamic joule heating system for continuous synthesis of graphene fibers with ultrashort high‐temperature (≈2000 °C), treating time (≈20 min), and low electric energy consumption (≈2000 kJ m −1 ). During the joule heating fabrication, the current flowing through the fibers can manipulate the configuration of graphene sheets, the basic component units of fiber, and induce their alignment. Theoretical simulations reveal that graphene sheets tend to rotate towards the current direction under the current induced electric field for the highest stability with the lowest electric free energy and zero rotation torque. Therefore, the electrical and mechanical performances of as‐fabricated graphene fibers can be further improved in comparison with thermally annealed graphene fibers without applying current.
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