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高效激光双向石墨烯打印:合成、转移与图案化的集成

Highly Efficient Laser Bidirectional Graphene Printing: Integration of Synthesis, Transfer and Patterning.

作者信息

Li Yunfan, Zeng Ziran, Zhang Shizhuo, Guo Dingyi, Li Peilong, Chen Xiao, Yi Longju, Zheng Huai, Liu Sheng, Liu Feng

机构信息

School of Power and Mechanical Engineering, Wuhan University, Wuhan, Hubei, 430072, China.

Institute of Technological Sciences, Wuhan University, Wuhan, Hubei, 430072, China.

出版信息

Small. 2024 Nov;20(45):e2404001. doi: 10.1002/smll.202404001. Epub 2024 Jul 27.

Abstract

Graphene has tremendous potential in future electronics due to its superior force, electrical, and thermal properties. However, the development of graphene devices is limited by its complex, high-cost, and low-efficiency preparation process. This study proposes a novel laser bidirectional graphene printing (LBGP) process for the large-scale preparation of patterned graphene films. In LBGP, a sandwich sample composed of a thermoplastic elastomer (TPE) substrate, carbon precursor powder, and a glass cover is irradiated by a nanosecond pulsed laser. The laser photothermal effect converts the carbon precursor into graphene, with partial graphene sheets deposited directly on the TPE substrate and the remaining transferred to the glass cover via a laser-induced plasma plume. This method simultaneously prepares two face-to-face graphene films in a single laser irradiation, integrating synthesis, transfer, and patterning. The resulting graphene patterns demonstrate good performance in flexible pressure sensing and Joule heating, showcasing high sensitivity (7.7 kPa), fast response (37 ms), and good cycling stability (2000 cycles) for sensors, and high heating rate (1 °C s) and long-term stability (3000 s) for heaters. It is believed that the simple, low-cost, and efficient LBGP process can promote the development of graphene electronics and laser manufacturing processes.

摘要

由于石墨烯具有卓越的力学、电学和热学性能,其在未来电子学领域具有巨大潜力。然而,石墨烯器件的发展受到其复杂、高成本和低效率制备工艺的限制。本研究提出了一种用于大规模制备图案化石墨烯薄膜的新型激光双向石墨烯印刷(LBGP)工艺。在LBGP工艺中,由热塑性弹性体(TPE)基板、碳前驱体粉末和玻璃盖组成的三明治样品受到纳秒脉冲激光照射。激光光热效应将碳前驱体转化为石墨烯,部分石墨烯片直接沉积在TPE基板上,其余的则通过激光诱导等离子体羽流转移到玻璃盖上。该方法在单次激光照射下同时制备两个面对面的石墨烯薄膜,集成了合成、转移和图案化。所得的石墨烯图案在柔性压力传感和焦耳加热方面表现出良好性能,对于传感器展示出高灵敏度(7.7 kPa)、快速响应(37 ms)和良好的循环稳定性(2000次循环),对于加热器展示出高加热速率(1℃/s)和长期稳定性(3000 s)。据信,简单、低成本且高效的LBGP工艺能够推动石墨烯电子学和激光制造工艺的发展。

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