首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Sessile Liquid Features as Molds for Silicone Elastomers
【24h】

Sessile Liquid Features as Molds for Silicone Elastomers

机译:无硅液体特征作为硅氧烷弹性体的模具

获取原文
获取原文并翻译 | 示例
           

摘要

Liquid applied to a chemically patterned (wetting/nonwetting, lyophilic/lyophobic) substrate forms a 3-dimensional contoured surface, the shape of which depends on the volume of liquid applied and the shape of the three-phase contact lines of air (or other phase in contact), liquid, and the wetted pattern. The resulting binary contoured interface with air, which consists of flat unwetted regions of the substrate and the mean curvature liquid-vapor interfaces of the sessile structures, can be used as a mold for imprinting solid polymers by curing liquid resins in contact. The success, flexibility with regard to shape, and reproducibility of this molding process depend on numerous issues. These include the substrate surface chemistry, the liquid application method, properties of the liquid (vapor pressure, surface tension, viscosity, and permeability in the resin), the contact angles of the liquid on the patterned substrate, and the resin curing chemistry and conditions. We investigate the room temperature platinum(0)-catalyzed curing of the most commonly studied commercial silicone elastomer, Sylgard 184, using molds composed of sessile drops of liquids on circular wetting features (bare silicon wafer) patterned on covalently attached fluoroalkylsilyl monolayers. Liquids reported are water, glycerol, an ethylene glycol oligomer, and an ionic liquid. The vapor pressure of water and its permeability in dimethyl silicone were important (and problematic) issues that could be controlled by adjusting humidity. The ionic liquid N-ethyl-N'-methylimidazolium methanesulfonate poisoned/inhibited the curing chemistry and affected silicone cross-link density and the resulting feature shape, but its lack of vapor pressure was useful in studying flow coating as a scalable liquid application method. The ethylene glycol oligomer exhibited compatibility with (and diffusion into) the silicone. Glycerol proved to be the most well-behaved and controllable liquid studied and was used to demonstrate that condensation/evaporation can be used to adjust feature shape.
机译:应用于化学图案化的(润湿/非刷子,冻干/疏液)基板的液体形成三维轮廓表面,其形状取决于所施加的液体体积和空气的三相接触线(或其他)的形状相位接触),液体和湿润的图案。由此产生的二进制轮廓界面与空气由基板的平坦未展开的区域组成和无故障结构的平均曲率液 - 蒸气接口,可以通过固化液体树脂接触来压印固体聚合物的模具。该成型过程的成功,灵活性以及该模塑过程的再现性取决于许多问题。这些包括基材表面化学,液体施加方法,液体的性质(蒸气压,表面张力,粘度和渗透性在树脂中),液体的接触角在图案化基板上,树脂固化化学和条件。我们研究了室温铂(0) - 使用由在共价附着的氟代烷基甲硅烷基单层上图案化的圆形润湿特征(裸硅晶片)上的液体颗粒组成的模具来调查最常见的商用硅氧烷弹性体Sylgard 184的催化固化。报道的液体是水,甘油,乙二醇低聚物和离子液体。水的蒸气压及其在二甲基硅氧烷中的渗透性是可以通过调节湿度来控制的重要(和有问题的)问题。离子液体N-乙基-N'-甲基亚甲酰胺中毒/抑制了固化化学并影响了硅胶交联密度和所得的特征形状,但其缺乏蒸气压可用于研究流动涂层作为可伸缩液体应用方法。乙二醇低聚物表现出与硅氧烷的(和扩散到)的相容性。甘油证明是研究中最良好的表现和可控的液体,并用于证明凝结/蒸发可用于调节特征形状。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号