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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Formation of a polymer surface with a gradient of pore size using a microfluidic chip
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Formation of a polymer surface with a gradient of pore size using a microfluidic chip

机译:使用微流控芯片形成具有孔径梯度的聚合物表面

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Here we demonstrate the generation of polymer monolithic surfaces possessing a gradient of pore and polymer globule sizes from ~0.1 to ~0.5 μm defined by the composition of two polymerization mixtures injected into a microfluidic chip. To generate the gradient, we used a PDMS microfluidic chip with a cascade micromixer with a subsequent reaction chamber for the formation of a continuous gradient film. The micromixer has zigzag channels of 400 × 680 μm~2 cross section and six cascades. The chip was used with a reversible bonding connection, realized by curing agent coating. After polymerization in the microfluidic chip the reversible bond was opened, resulting in a 450 μm thick polymer film possessing the pore size gradient. The gradient formation in the microfluidic reaction chamber was studied using microscopic laser-induced fluorescence (μLIF) and different model fluids. Formation of linear gradients was shown using the fluids of the same density by both diffusive mixing at flow rates of 0.001 mL/min and in a convective mixing regime at flow rates of 20 mL/min. By using different density fluids, formation of a two-dimensional wedge-like gradient controlled by the density difference and orientation of the microfluidic chip was observed.
机译:在这里,我们证明了聚合物整体表面的生成,该表面具有从〜0.1到〜0.5μm的孔隙和聚合物小球尺寸梯度,由注入到微流控芯片中的两种聚合混合物的成分定义。为了生成梯度,我们使用了带有级联微混合器的PDMS微流控芯片和随后的反应室,以形成连续的梯度膜。微型混合器具有400×680μm〜2横截面的锯齿形通道和六个级联。芯片使用可逆键合连接,可通过固化剂涂层实现。在微流控芯片中聚合后,可逆键被打开,从而形成了具有孔径梯度的450μm厚聚合物膜。使用微观激光诱导的荧光(μLIF)和不同的模型流体研究了微流体反应室中的梯度形成。使用相同密度的流体通过以0.001 mL / min的流速进行扩散混合,以及以20 mL / min的对流混合状态,均显示出线性梯度的形成。通过使用不同密度的流体,观察到由微流体芯片的密度差和取向控制的二维楔形梯度的形成。

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