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Suspended Liquid Subtractive Lithography - Printing three dimensional channels directly into uncured PDMS

机译:悬浮的液体减法光刻 - 将三维通道直接印刷成未固化的PDMS

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Polydimethylsiloxane (PDMS) is one of the most widely used polymers for the generation of microfluidic chips. The standard procedures of soft lithography require the formation of a new master structure for every design which is time-consuming and expensive. All channel generated by soft lithography need to be consecutively sealed by bonding which is a process that can proof to be hard to control. Channel cross-sections are largely restricted to squares or flat-topped designs and the generation of truly three-dimensional designs is not straightforward. Here we present Suspended Liquid Subtractive Lithography (SLSL) a method for generating microfluidic channels of nearly arbitrary three-dimensional structures in PDMS that do not require master formation or bonding and give circular channel cross sections which are especially interesting for mimicking in vivo environments. In SLSL, an immiscible liquid is introduced into the uncured PDMS by a capillary mounted on a 3D printer head. The liquid forms continuous "threads" inside the matrix thus creating void suspended channel structures.
机译:聚二甲基硅氧烷(PDMS)是用于产生微流体芯片的最广泛使用的聚合物之一。软光刻的标准程序需要为每个设计耗时和昂贵的设计形成新的主结构。软光刻产生的所有通道需要通过粘合连续密封,这是一种可以证明难以控制的过程。通道横截面主要限于平方或平顶设计,并且真正的三维设计的产生并不直接。在这里,我们呈现悬浮的液体减法光刻(SLSL)一种用于在PDM中产生几乎任意三维结构的微流体通道的方法,该方法不需要母形成或粘合,并给出对于在体内环境中模仿特别感兴趣的圆形通道横截面。在SLS1中,通过安装在3D打印机头上的毛细管将不混溶的液体引入未固化的PDMS中。液体在基质内形成连续的“螺纹”,从而产生空隙悬挂通道结构。

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