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Gradient Structures Interfacing Microfluidics and Nanofluidics, Methods for Fabrication and Uses Thereof

机译:连接微流体和纳米流体的梯度结构,其制备方法及其用途

摘要

A fluidic chip includes at least one nanochannel array, the nanochannel array including a surface having a nanofluidic area formed in the material of the surface; a microfluidic area on said surface; a gradient interface area having a gradual elevation of height linking the microfluidic area and the nanofluidic area; and a sample reservoir capable of receiving a fluid in fluid communication with the microfluidic area. In another embodiment, a fluidic chip includes at least one nanochannel array, the nanochannel array includes a surface having a nanofluidic area formed in the material of the surface; a microfluidic area on said surface; and a gradient interface area linking the microfluidic area and the nanofluidic area, where the gradient interface area comprises a plurality of gradient structures, and the lateral spacing distance between said gradient structures decreases towards said nanofluidic area; and a sample reservoir capable of receiving a fluid in fluid communication with the microfluidic area.
机译:流体芯片包括至少一个纳米通道阵列,该纳米通道阵列包括具有在表面的材料中形成的纳米流体区域的表面。所述表面上的微流体区域;梯度界面区域,其具有逐渐升高的高度,将微流体区域和纳米流体区域连接起来;样品容器能够接收与微流体区域流体连通的流体。在另一个实施方案中,流体芯片包括至少一个纳米通道阵列,该纳米通道阵列包括表面,该表面具有在表面的材料中形成的纳米流体区域。所述表面上的微流体区域;连接微流体区域和纳米流体区域的梯度界面区域,其中梯度界面区域包括多个梯度结构,并且所述梯度结构之间的横向间隔距离朝着所述纳米流体区域减小;样品容器能够接收与微流体区域流体连通的流体。

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