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首页> 外文期刊>Advanced materials interfaces >3D Graphene Oxide Micropatterns Achieved by Roller-Assisted Microcontact Printing Induced Interface Integral Peel and Transfer
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3D Graphene Oxide Micropatterns Achieved by Roller-Assisted Microcontact Printing Induced Interface Integral Peel and Transfer

机译:3D石墨烯氧化物微图案通过辊辅微接触印刷衔接界面整体剥离和转移

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摘要

Most fascinating applications of graphene-based devices are highly dependent on the precise fabrication of patterned graphene microstructures. While considerable progress of 2D patterning of graphene has been achieved with various lithographic techniques, the realization of patterned 3D graphene microstructures still remains a significant challenge. Here, a rapid and highly scalable roller-assisted microcontact printing (RAμCP) strategy for the fabrication of 3D graphene oxide micropatterns is reported. The facile RAμCP allows for the robust negative duplication of 3D topologies of the microstructured stamp using chemically modified graphene as the inks. The patterned 3D graphene microstructures exhibit interesting properties of graphene itself and allow for further functionalization of polymers to enable the potential integration of the 3D patterned microstructures into next-generation 2D Janus hybrid thin film for chemical sensors and other electronic devices.
机译:基于石墨烯的器件的最令人着迷的应用高度依赖于图案化石墨烯微结构的精确制造。 虽然通过各种光刻技术实现了图案的2D图案的相当大的进展,但是图案化的3D石墨烯微结构的实现仍然是一个重大挑战。 这里,报道了一种用于制造3D石墨烯微图案的快速和高度可扩展的滚子辅助微接触印刷(RAμCP)策略。 BacefileRaμCP允许使用化学改性的石墨烯作为油墨的显微结构印模的3D拓扑的鲁棒负重复。 图案化的3D石墨烯微观结构表现出石墨烯本身的有趣性质,并且允许聚合物的进一步官能化,以使得将3D图案化的微观结构的潜在整合到用于化学传感器和其他电子设备的下一代2D Janus杂交薄膜。

著录项

  • 来源
    《Advanced materials interfaces》 |2017年第3期|共8页
  • 作者单位

    Ningbo Institute of Material Technology and Engineering Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Chinese Academy of Science Zhongguan West Road 1219 315201 Ningbo China;

    Ningbo Institute of Material Technology and Engineering Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Chinese Academy of Science Zhongguan West Road 1219 315201 Ningbo China;

    Chair of Macromolecular Chemistry School of Science Technische Universit?t Dresden Mommsenstr. 4 01069 Dresden Germany;

    Ningbo Institute of Material Technology and Engineering Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Chinese Academy of Science Zhongguan West Road 1219 315201 Ningbo China;

    Ningbo Institute of Material Technology and Engineering Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Chinese Academy of Science Zhongguan West Road 1219 315201 Ningbo China;

    Ningbo Institute of Material Technology and Engineering Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Chinese Academy of Science Zhongguan West Road 1219 315201 Ningbo China;

    Ningbo Institute of Material Technology and Engineering Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Chinese Academy of Science Zhongguan West Road 1219 315201 Ningbo China;

    Chair of Macromolecular Chemistry School of Science Technische Universit?t Dresden Mommsenstr. 4 01069 Dresden Germany;

    Ningbo Institute of Material Technology and Engineering Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Chinese Academy of Science Zhongguan West Road 1219 315201 Ningbo China;

    Ningbo Institute of Material Technology and Engineering Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Chinese Academy of Science Zhongguan West Road 1219 315201 Ningbo China;

    Ningbo Institute of Material Technology and Engineering Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Chinese Academy of Science Zhongguan West Road 1219 315201 Ningbo China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    fascinating; applications; graphene-based;

    机译:迷人的;应用;基于石墨烯;

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