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Direct Writing of Hydrophobic Sol-Gel Patterns

机译:直接写入疏水溶胶 - 凝胶模式

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Solution-based fabrication methods have been widely used for depositing uniform functional coatings. These coatings can be utilized in a variety of applications such as optoelectronics, biomedical, and energy. However, such fabrication techniques are not appropriate for directly depositing patterned micro/nano-scale features, which are required in many contact-based applications such as in MEMS. In this work we propose the direct writing of hydrophobic silica-based sol-gel patterns with sustained functionality and their subsequent tribological characterization. Such an approach may be an advantageous alternative to current lithography-based methods due to the relative ease of processing and low material waste. This investigation involves the abrasive wear and frictional analysis of patterned fluorinated silica sol-gel coatings that are directly printed onto glass substrates with a robotically controlled pneumatic nozzle system. Such work sheds light on the tribological properties of lithography-free processed hydrophobic patterns for applications spanning from micromotors to biomedical fluidic devices.
机译:基于溶液的制造方法已广泛用于沉积均匀的功能涂层。这些涂层可用于各种应用,例如光电子,生物医学和能量。然而,这种制造技术不适用于直接沉积图案化的微/纳米级特征,这在诸如MEMS中的许多基于接触的应用中需要。在这项工作中,我们提出了具有持续官能度的疏水性二氧化硅基溶胶模式及其随后的摩擦学特征。这种方法可能是基于光刻的基于光刻的方法的有利替代性,因为相对容易的加工和低材料废物。该研究涉及图案化氟化硅溶胶 - 凝胶涂层的研磨磨损和摩擦分析,其直接印刷到具有机器人控制的气动喷嘴系统的玻璃基板上。这种工作揭示了无光化加工的疏水模式的摩擦学特性,用于从微量球到生物医学流体装置的应用。

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