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迈向全碳电子学:使用无掩模激光直写技术制造基于石墨烯的柔性电子电路和存储卡。

Toward all-carbon electronics: fabrication of graphene-based flexible electronic circuits and memory cards using maskless laser direct writing.

机构信息

Key Laboratory of Functional Polymer Materials and Center for Nanoscale Science & Technology, Institute of Polymer Chemistry, College of Chemistry, Nankai University, Tianjin 300071, China.

出版信息

ACS Appl Mater Interfaces. 2010 Nov;2(11):3310-7. doi: 10.1021/am1007326. Epub 2010 Nov 8.

Abstract

Owing to its extraordinary electronic property, chemical stability, and unique two-dimensional nanostructure, graphene is being considered as an ideal material for the highly expected all-carbon-based micro/nanoscale electronics. Herein, we present a simple yet versatile approach to constructing all-carbon micro/nanoelectronics using solution-processing graphene films directly. From these graphene films, various graphene-based microcosmic patterns and structures have been fabricated using maskless computer-controlled laser cutting. Furthermore, a complete system involving a prototype of a flexible write-once-read-many-times memory card and a fast data-reading system has been demonstrated, with infinite data retention time and high reliability. These results indicate that graphene could be the ideal material for fabricating the highly demanded all-carbon and flexible devices and electronics using the simple and efficient roll-to-roll printing process when combined with maskless direct data writing.

摘要

由于其非凡的电子特性、化学稳定性和独特的二维纳米结构,石墨烯被认为是一种理想的材料,可以用于人们高度期待的全碳基微/纳电子学。在此,我们提出了一种简单而通用的方法,使用溶液处理的石墨烯薄膜直接构建全碳微/纳电子学。从这些石墨烯薄膜中,我们使用无掩模计算机控制的激光切割制造了各种基于石墨烯的微观图案和结构。此外,还展示了一个完整的系统,包括一个柔性一次写入多次读取存储原型卡和一个快速的数据读取系统,具有无限的数据保持时间和高可靠性。这些结果表明,当与无掩模直接数据写入相结合时,石墨烯可以成为使用简单高效的卷对卷印刷工艺制造高度要求的全碳和柔性器件和电子产品的理想材料。

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