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Modification of Polymer Surfaces and the Fabrication of Submicron‐scale Functionalized Structures by Deep‐ultraviolet and Electron‐beam Lithography

机译:深紫外和电子束光刻技术对聚合物表面的改性和亚微米级功能化结构的制造

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摘要

[[abstract]]A general technique to modify polymer surfaces using N‐hydroxysuccinimide (NHS) functionalized perfluorophenyl azides (PFPAs) is presented. Thin polystyrene films are spin‐coated with a solution containing the NHS PFPA ester and are either ultraviolet (UV) photolyzed with a dosage of 10 mJ cm−2 or exposed with a 15 kV electron beam with a dosage between 1 and 75 μC cm−2. The NHS active ester groups become covalently attached to the polymer via photogenerated or electron beam generated, highly reactive nitrene intermediates derived from the PFPA. Using this technique, it is demonstrated that well‐defined surface regions can be functionalized with a minimum observable feature size of 0.5 and 0.2 μm for UV and electron‐beam exposure, respectively. Through reaction of the functionalized surfaces with primary amine‐containing reagents, biological molecules have been installed on the polymer and the activity of an immobilized enzyme has been measured.
机译:[[摘要]]介绍了使用N-羟基琥珀酰亚胺(NHS)功能化的全氟苯基叠氮化物(PFPA)改性聚合物表面的通用技术。聚苯乙烯薄膜涂有含有NHS PFPA酯的溶液,并用10 mJ cm-2的剂量进行紫外线(UV)光解或用1至75μCcm-的剂量的15 kV电子束曝光。 2。 NHS活性酯基通过光生或电子束产生的,高反应性的,来自PFPA的腈中间体与聚合物共价连接。使用该技术证明,可以对明确定义的表面区域进行功能化,其最小可见特征尺寸分别为UV和电子束曝光,分别为0.5和0.2μm。通过功能化表面与含伯胺的试剂反应,在聚合物上安装了生物分子,并测量了固定化酶的活性。

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  • 作者

    Wybourne M. N.;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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