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Patterned Surface with Controllable Wettability for Inkjet Printing of Flexible Printed Electronics

机译:具有可控润湿性的图案化表面,用于柔性印刷电子的喷墨印刷

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Appropriate control of substrate surface properties prior to inkjet printing could be employed to improve the printing quality of fine resolution structures. In this paper, novel methods to fabricate patterned surfaces with a combination of hydrophilic and hydrophobic properties are investigated. The results of inkjet printing of PEDOT/PSS conductive ink on these modified surfaces are presented. Selective wetting was achieved via a two-step hydrophilic— hydrophobic coating of 3-aminopropyl trimethoxysilane (APTMS) and 3M electronic grade chemical respectively on PET surfaces; this was followed by a selective hydrophilic treatment (either atmospheric O2/Ar plasma or UV/ozone surface treatment) with the aid of a Nickel stencil. Hydrophobic regions with water contact angle (WCA) of 105° and superhydrophilic regions with WCA <5° can be achieved on a single surface. During inkjet printing of the treated surfaces, PEDOT/PSS ink spread spontaneously along the hydrophilic areas while avoiding the hydrophobic regions. Fine features smaller than the inkjet droplet size (approximately 55 μm in diameter) can be successfully printed on the patterned surface with high wettability contrast.
机译:可以在喷墨印刷之前适当地控制基材表面性质,以改善精细分辨率结构的印刷质量。在本文中,研究了结合亲水和疏水特性来制造带图案表面的新方法。给出了在这些改性表面上喷墨印刷PEDOT / PSS导电油墨的结果。选择性润湿是通过在PET表面分别进行3-氨基丙基三甲氧基硅烷(APTMS)和3M电子级化学品的两步亲水-疏水涂层实现的;接着是借助镍蜡纸进行选择性亲水处理(大气O2 / Ar等离子体或UV /臭氧表面处理)。可以在单个表面上实现水接触角(WCA)为105°的疏水区域和WCA <5°的超亲水区域。在对处理过的表面进行喷墨打印期间,PEDOT / PSS墨水自发地沿亲水区域扩散,同时避开了疏水区域。小于喷墨液滴尺寸(直径约55μm)的细微特征可以成功地在具有高润湿性对比度的图案化表面上印刷。

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