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石墨烯导电墨水研究进展:制备方法、印刷技术及应用

Recent developments in graphene conductive ink: Preparation, printing technology and application

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【作者】 姜欣赵轩亮李晶林舒媛朱宏伟

【Author】 JIANG Xin;ZHAO XuanLiang;LI Jing;LIN ShuYuan;ZHU HongWei;State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University;Center for Nano and Micro Mechanics, Tsinghua University;

【机构】 清华大学材料科学与工程学院新型陶瓷与精细工艺国家重点实验室清华大学微纳米力学与多学科交叉研究中心

【摘要】 传统印刷技术与微电子制造的交叉技术——印刷电子技术的发展得益于微纳米材料制备技术的成熟.二维纳米碳材料石墨烯由于其独特的结构和突出的性能,可与传统金属或高聚物材料共同作为导电墨水主要导电组分.本文讨论了目前石墨烯导电墨水制备中的关键问题、不同制备方案及其优劣之处;评述了石墨烯导电墨水印刷工艺的研究进展,包括传统印刷技术和新型印刷技术中的应用与难点.最后,总结了石墨烯导电墨水在柔性功能器件(基本电路元件、能量存储和力学/化学传感器件等)中的应用现状.

【Abstract】 Electronic printing is an interdisciplinary technology of traditional printing technology and microelectronics manu-facturing. The development of electronic printing has mostly benefited from the progress of nanomaterials research. Graphene, a novel two-dimensional carbon nanomaterial, has shown excellent electrical, thermal, optical properties in flexible electrical devices. Graphene with traditional metals or polymer materials together could act as the main conductive components in conductive ink. Printing of graphene ink represents a cost-effective deposition technique to obtain patterned conductive graphene films, and further assemble them into functional electrical devices. Therefore, electronic printing based on graphene conductive ink is one of the recent research hotspots. In this paper, we review recent developments and advances in research of graphene conductive ink. This review begins with an introduction of different preparation strategies for graphene conductive inks. For printing, the three major pathways for producing graphene sheets are oxidation-reduction, solvent exfoliation and electrochemical expansion of graphite. Different preparation strategies for conductive inks are classified into three major methods: Graphene inks stabilized by surfactants or functional groups, and graphene-based composite conductive ink. The detailed review of graphene conductive ink preparation is discussed with specific examples. Preparation of graphene conductive inks of high concentrations, stability and printing adaptability is the key issue in electronic printing. Subsequently, an introduction of common printing methods and principles is given. Five printing methods are discussed in this review, including inkjet printing, gravure printing, transfer printing, direct writing and threedimensional(3D) printing. Printing is kind of additive manufacturing, by depositing graphene onto substrates of various materials, sizes, flexibility and roughness for conductive pattern. Different printing techniques have unique requirements of ink rheological properties. The inkjet printing is becoming the most common technique employed in both academic research and industrial application. The realization of rapid, accurate, simple and controllable printing has important influence on the application of graphene conductive ink. Finally, applications of printed graphene conductive ink in flexible functional devices, including basic electrical circuits, energy storage devices and mechanical/chemical sensing devices, are envisioned. Basic electrical circuits, like flexible conductive patterns, field-effect transistors and radio-frequency circuits, play an important role in the fabrication of wearable devices. Printing also offers a cheap, scalable method of fabricating energy storage devices, including supercapacitor and lithium battery. The unique structure of graphene makes possible the fabrication of different kinds of sensors, including strain, temperature, chemical, electrochemical, photo-electricity sensors and biosensors. An outlook of potential future trends in printing graphene conductive ink research and technology is followed. In summary, printing graphene conductive ink has made many significant advances in a wide range of applications. However, the industrial-level application is still limited, and the preparation and application of graphene conductive ink still need further study. A number of key issues should be solved, including stability of graphene ink, electronic conductivity of printed circuit, limited printing resolution, etc. Overall, electronic printing technology based on graphene conductive ink is not meant as a replacement for microelectronic manufacturing engineering, but instead provides an opportunity to produce large-area flexible electronic devices at low cost. Electronic printing of graphene conductive ink will result in a diverse range of novel applications in many fields, and it calls for more research in the future.

【基金】 国家自然科学基金(51372133,51672150)资助
  • 【文献出处】 科学通报 ,Chinese Science Bulletin , 编辑部邮箱 ,2017年27期
  • 【分类号】TS802.3
  • 【被引频次】19
  • 【下载频次】1186
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