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Photoclickable surfaces for profluorescent covalent polymer coatings

机译:用于可发荧光的共价聚合物涂料的可光点击表面

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摘要

The nitrile imine-mediated tetrazole-ene cycloaddition reaction (NITEC) is introduced as a powerful and versatile conjugation tool to covalently ligate macromolecules onto variable (bio)surfaces. The NITEC approach is initiated by UV irradiation and proceeds rapidly at ambient temperature yielding a highly fluorescent linkage. Initially, the formation of block copolymers by the NITEC methodology is studied to evidence its efficacy as a macromolecular conjugation tool. The grafting of polymers onto inorganic (silicon) and bioorganic (cellulose) surfaces is subsequently carried out employing the optimized reaction conditions obtained from the macromolecular ligation experiments and evidenced by surface characterization techniques, including X-ray photoelectron spectroscopy and FT-IR microscopy. In addition, the patterned immobilization of variable polymer chains onto profluorescent cellulose is achieved through a simple masking process during the irradiation. Photoinduced nitrile imine-alkene 1,3-dipolar cycloaddition (NITEC) is employed to covalently bind well-defined polymers onto silicon oxide or cellulose. A diaryl tetrazole-functionalized molecule is grafted via silanization or amidification, respectively. Under UV light, a reactive nitrile imine rapidly forms and reacts with maleimide-functionalized polymers yielding a fluorescent linkage. Via a masking method, polymeric fluorescent patterns are achieved.
机译:腈亚胺介导的四唑-烯环加成反应(NITEC)是一种强大的多功能共轭工具,可将大分子共价连接到可变(生物)表面上。 NITEC方法由紫外线照射引发,并在环境温度下迅速进行,产生高度荧光的键合。最初,通过NITEC方法研究了嵌段共聚物的形成,以证明其作为大分子共轭工具的功效。随后,采用从大分子连接实验获得的最佳反应条件,并通过表面表征技术(包括X射线光电子能谱和FT-IR显微镜)证明,将聚合物接枝到无机(硅)和生物有机(纤维素)表面上。另外,通过在辐照期间的简单掩蔽过程,实现了将可变聚合物链图案化地固定在原荧光纤维素上。光诱导的腈亚胺-烯烃1,3-偶极环加成(NITEC)用于将明确定义的聚合物共价键合到氧化硅或纤维素上。二芳基四唑官能化的分子分别通过硅烷化或酰胺化接枝。在紫外线下,反应性腈亚胺迅速形成并与马来酰亚胺官能化的聚合物反应,产生荧光键。通过掩蔽方法,获得聚合物荧光图案。

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