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首页> 外文期刊>Journal of micro and nano manufacturing >Fabrication of a Micro/Nanofluidic Platform Via Three-Axis Robotic Dispensing System
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Fabrication of a Micro/Nanofluidic Platform Via Three-Axis Robotic Dispensing System

机译:通过三轴机器人点胶系统制造微/纳流体平台

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摘要

The purpose of this work is to introduce a new fabrication technique for creating a fluidic platform with embedded micro- or nanoscale channels. This new technique includes: (1) a three-axis robotic dispensing system for drawing microanoscale suspended polymer fibers at prescribed locations, combined with (2) dry film resist photolithography, and (3) replica molding. This new technique provides flexibility and precise control of the micro- and nano-channel location with the ability to create multiple channels of varying sizes embedded in a single fluidic platform. These types of microanofluidic platforms are attractive for numerous applications, such as the separation of biomolecules, cell transport, and transport across cell membranes via electroporation. The focus of this work is on the development of a fabrication technique for the creation of a nanoscale electroporation device.
机译:这项工作的目的是介绍一种新的制造技术,以创建具有嵌入式微或纳米级通道的流体平台。这项新技术包括:(1)三轴机械手分配系统,用于在规定的位置拉伸微/纳米级悬浮聚合物纤维,以及(2)干膜抗蚀剂光刻和(3)复制成型。这项新技术提供了微通道和纳米通道位置的灵活性和精确控制,并具有创建嵌入单个流体平台的大小不同的多个通道的能力。这些类型的微/纳米流体平台对于许多应用具有吸引力,例如生物分子的分离,细胞转运以及通过电穿孔跨细胞膜转运。这项工作的重点是开发用于创建纳米级电穿孔设备的制造技术。

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