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Fabrication of complex 3D polymer structures for cell-polymer hybrid systems

机译:用于电池-聚合物混合系统的复杂3D聚合物结构的制造

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摘要

This paper presents a new technique to fabricate three-dimensional thin polymer structures with different geometries on each side for cell-polymer microstructures. To make complex 3D polymer structures, we manufacture a 3D-micromolding aligner, which can make two molding masters be aligned within 2 mu m and allows for applying high pressure to construct thin membranes of less than 20 mu m. Using this system, wafer-level fabrication of thin polymer structures with complex 3D geometries is realized successfully. Generally, 3D polymer microstructures are used in microfluidic systems, such as micromixers, valves and pumps. In this study we demonstrate some applications for these 3D structures as versatile cell-based microsensors for understanding structural and functional changes of cells and as hybrid organic-inorganic actuators that can be operated independently without external power sources.
机译:本文提出了一种新的技术来制造三维薄的聚合物结构,每侧具有不同的几何形状,以用于单元聚合物微结构。为了制造复杂的3D聚合物结构,我们制造了3D-微成型对准器,该对准器可以使两个成型母板在2微米内对准,并允许施加高压以构造小于20微米的薄膜。使用该系统,可以成功实现具有复杂3D几何形状的薄聚合物结构的晶圆级制造。通常,在微流体系统中使用3D聚合物微结构,例如微混合器,阀门和泵。在这项研究中,我们展示了这些3D结构的一些应用,它们是基于通用的基于细胞的微传感器,用于理解细胞的结构和功能变化,还可以作为无需外部电源即可独立运行的混合有机-无机致动器。

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