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在气相二氧化硅纳米颗粒悬浮液中打印疏水性材料。

Printing of Hydrophobic Materials in Fumed Silica Nanoparticle Suspension.

作者信息

Jin Yifei, Song Kaidong, Gellermann Nevada, Huang Yong

出版信息

ACS Appl Mater Interfaces. 2019 Aug 14;11(32):29207-29217. doi: 10.1021/acsami.9b07433. Epub 2019 Aug 5.

Abstract

Freeform three-dimensional (3D) printing of functional structures from liquid hydrophobic build materials is of great significance and widely used in various fields such as soft robotics and microfluidics. In particular, a yield-stress support bath-enabled 3D-printing methodology has been emerging to fabricate complex 3D structures. Unfortunately, the reported support bath materials are either hydrophobic or not versatile enough for the printing of a wide range of hydrophobic materials. The objective of this study is to propose a fumed silica nanoparticle-based yield-stress suspension as a hydrophobic support bath to enable 3D extrusion printing of various hydrophobic ink materials in a printing-then-solidification fashion. Hydrophobic ink is freeform-deposited in a hydrophobic fumed silica-mineral oil suspension and maintains its shape during printing; it is not cured until the whole structure is complete. Various hydrophobic inks including poly(dimethylsiloxane) (PDMS), SU-8 resin, and epoxy-based conductive ink are printed into complex 3D structures in the fumed silica-mineral oil bath and then cured using relevant cross-linking mechanisms, even at a temperature as high as 90 °C, to prove the feasibility and versatility of the proposed printing approach. In addition, the deposited feature can easily reach a much better resolution such as 30 μm for PDMS filaments due to the negligible interfacial tension effect.

摘要

利用液态疏水性构建材料进行自由形式的三维(3D)功能结构打印具有重要意义,并广泛应用于软机器人技术和微流体等各个领域。特别是,一种启用屈服应力支撑浴的3D打印方法已逐渐兴起,用于制造复杂的3D结构。不幸的是,已报道的支撑浴材料要么具有疏水性,要么对于打印多种疏水性材料来说通用性不足。本研究的目的是提出一种基于气相二氧化硅纳米颗粒的屈服应力悬浮液作为疏水性支撑浴,以实现以先打印后固化的方式对各种疏水性油墨材料进行3D挤出打印。疏水性油墨以自由形式沉积在疏水性气相二氧化硅 - 矿物油悬浮液中,并在打印过程中保持其形状;直到整个结构完成后才会固化。包括聚二甲基硅氧烷(PDMS)、SU - 8树脂和环氧基导电油墨在内的各种疏水性油墨在气相二氧化硅 - 矿物油浴中被打印成复杂的3D结构,然后使用相关交联机制进行固化,即使在高达90°C的温度下,以证明所提出的打印方法的可行性和通用性。此外,由于界面张力效应可忽略不计,沉积特征能够轻松达到更好的分辨率,例如PDMS细丝的分辨率可达30μm。

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