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Direct synthesis of single-layer graphene films on quartz substrate by a nanoparticle-assisted method

机译:通过纳米颗粒辅助方法直接合成石英底物上的单层石墨烯薄膜

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摘要

Matching graphene to semiconducting or insulating substrates is necessary for wide-ranging applications. Although synthesis of high-quality graphene on metal surfaces has gained great success, the transfer process of graphene is quite complicated and may cause defects and contamination. Therefore, the growth of graphene on insulating substrates is very important. Here, a direct synthesis method of single-layer graphene films on quartz substrate via a Cu-nanoparticle-assisted method was reported (N-CVD). The growth rate and quality of graphene on quartz showed a remarkable improvement compared with the conventional CVD process. Localized catalyzation made it possible for large-scale and continuous growth. Furthermore, the graphene glass fabricated by this method showed great performances on electrical, optical and thermal properties, and was proved to be hydrophobic. We designed a 2 cm x 2 cm single-layer graphene defogger, which can remove the fog completely within 10 s with a 30 V input voltage. Briefly, this work aims to present a low-cost, uniform and scalable method for graphene synthesis on insulating substrates.
机译:对于广泛的应用,需要将石墨烯与半导体或绝缘基板匹配。尽管在金属表面上的高质量石墨烯的合成已经取得了巨大的成功,但石墨烯的转移过程非常复杂,可能导致缺陷和污染。因此,石墨烯对绝缘基材的生长非常重要。这里,报道了通过Cu-纳米粒子辅助方法(N-CVD)的石英底物上单层石墨烯膜的直接合成方法。与传统的CVD工艺相比,石墨烯的生长速率和质量表现出显着的改善。局部催化使得大规模和持续的增长使其成为可能。此外,通过该方法制造的石墨烯玻璃在电气,光学和热性质上表现出很大的性能,并且被证明是疏水的。我们设计了2厘米x 2 cm的单层石墨烯缺口器,可以在10秒内完全拆下雾,以30 v输入电压。简而言之,该工作旨在呈现低成本,均匀和可扩展的方法,用于在绝缘基板上的石墨烯合成。

著录项

  • 来源
    《Applied Surface Science》 |2020年第1期|147082.1-147082.7|共7页
  • 作者单位

    Peking Univ Sch Phys State Key Lab Nucl Phys & Technol Beijing 100871 Peoples R China;

    Peking Univ Sch Phys State Key Lab Nucl Phys & Technol Beijing 100871 Peoples R China;

    Peking Univ Sch Phys State Key Lab Nucl Phys & Technol Beijing 100871 Peoples R China;

    Peking Univ Sch Phys State Key Lab Nucl Phys & Technol Beijing 100871 Peoples R China;

    Peking Univ Sch Phys State Key Lab Nucl Phys & Technol Beijing 100871 Peoples R China;

    Peking Univ Sch Phys State Key Lab Nucl Phys & Technol Beijing 100871 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Graphene; Quartz substrate; CVD; Nanoparticle; Defogge;

    机译:石墨烯;石英底物;CVD;纳米粒子;改变;

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