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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Hierarchical PEG-Based 3D Patterns Grafting from Polymer Substrate by Surface Initiated Visible Light Photolithography
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Hierarchical PEG-Based 3D Patterns Grafting from Polymer Substrate by Surface Initiated Visible Light Photolithography

机译:通过表面引发的可见光光刻技术从聚合物基质接枝的基于PEG的分层3D图案

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摘要

The precise construction of a hierarchical complex pattern on substrates is required for numerous applications. Here, a strategy to fabricate well-defined hierarchical three dimensional (3D) patterns on polymer substrate is developed. This technique, which combines photolithography and visible light-induced surface initiated living graft crosslinking polymerization (VSLGCP), can effectively graft 3D patterns onto polymer substrate with high fidelity and controllable height. Owing to the living nature of VSLGCP, hierarchical 3D patterns can be prepared when a sequential living graft crosslinking process is performed on the first formed patterns. As a proof-of-concept, a reactive two layer 3D pattern with a morphology of lateral stripe on vertical stripe is prepared and employed to separately immobilize model biomolecules, e.g., biotin and IgG. This two component pattern can specifically interact with corresponding target proteins successfully, indicating that this strategy has potential applications in the fabrication of polymer-based multicomponent biomolecule microarrays.
机译:对于许多应用,需要在基板上精确地构造分层的复杂图案。在这里,开发了一种在聚合物基板上制造定义明确的分层三维(3D)图案的策略。这项技术结合了光刻技术和可见光引发的表面引发的活性接枝交联聚合(VSLGCP)技术,可以将3D图案有效地接枝到聚合物基材上,保真度高且高度可控。由于VSLGCP的活动特性,当在第一个形成的图案上执行顺序的活动接枝交联过程时,可以准备分层3D图案。作为概念证明,制备在垂直条带上具有侧条形形态的反应性两层3D图案,并用于分别固定模型生物分子,例如生物素和IgG。这两种组分模式可以成功地与相应的靶蛋白特异性相互作用,表明该策略在基于聚合物的多组分生物分子微阵列的制造中具有潜在的应用。

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