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无机纳米导电材料在柔性印刷电子中的应用

Research Progress of Inorganic Conductive Nanomaterials in Flexible and Printed Electronics

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【作者】 马维娟王芳冬耿明天郭洋刘宇康李路海莫黎昕

【Author】 MA Wei-juan;WANG Fang-dong;GENG Ming-tian;GUO Yang;LIU Yu-kang;LI Lu-hai;MO Li-xin;School of Printing and Packaging Engineering, Beijing Institute of Graphic Communication;Beijing Engineering Research Center of Printed Electronics, Beijing Institute of Graphic Communication;Beijing Printing Group Co., Ltd.;

【通讯作者】 李路海;莫黎昕;

【机构】 北京印刷学院印刷与包装工程学院北京印刷学院,北京市印刷电子工程技术研究中心北京印刷集团有限责任公司

【摘要】 印刷电子技术起源于可溶液化的有机电子材料,而无机纳米导电材料的兴起推动了印刷电子的快速发展。无机纳米导电材料包括金属、碳材料等导体,以及硅、锗、金属氧化物等半导体。本文概述了无机纳米导电材料在印刷电子领域的发展历程,综述了无机纳米导体材料的性质和油墨化技术,包括可印刷纳米金属材料、碳材料、液态金属以及MXene,并介绍其在柔性与印刷电子领域中的应用。最后指出了可印刷无机纳米导电材料存在的问题及其在柔性与印刷电子领域的发展趋势。

【Abstract】 Printed electronics technology originates from organic electronic materials which can be solubilized, and the rise of inorganic conductive nanomaterials promotes the rapid development of printed electronics. Inorganic conductive nanomaterials include conductors such as metals and carbon materials, as well as semiconductors such as silicon, germanium, and metal oxides. In this paper, the development process of inorganic conductive nanomaterials was outlined in the field of printed electronics. The properties and inkjet technology of inorganic conductive nanomaterials were summarized, including printable metal nanomaterials, carbon materials, liquid metals, and MXene, and their applications were introduced in the field of flexible and printed electronics. Finally, the problems of printable inorganic conductive nanomaterials and their development trend in the field of flexible and printed electronics were indicated.

【基金】 北京市属高等学校高水平科研创新团队建设支持计划(No.BPHR20220107);北京市教委科研计划项目资助(重点)(No.KZ202110015019);2023年北京印刷学院科研平台资助(No.21090122014);北京印刷学院材料科学与工程学科建设项目(No.21090123007);2022年国家大学生创新创业训练计划(No.22150123019)
  • 【文献出处】 印刷与数字媒体技术研究 ,Printing and Digital Media Technology Study , 编辑部邮箱 ,2024年02期
  • 【分类号】TB383.1;TS873
  • 【下载频次】67
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