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Polymeric photoacid generators for direct photochemical modification of surface

机译:聚合物光酸产生剂,用于表面的直接光化学改性

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To achieve easy spin coating and enhanced efficiency in the photolithographic process for the direct photochemical modification of surface, we incorporated photoacid generator (PAG) into polymer backbone. Bis-(4-hydroxy-phenyl)-(4-methoxy-3,5-dimethyl-phenyl)-sulfonium chloride was synthesized as a monomer, and was polymerized with sebacoyl chloride and terephthaloyl chloride. The resulting polymeric PAG in chloride salt form was converted to the p-toluenesulfonate and 1-naphthol-5-sulfonate forms with ion-exchange reactions. By the photolithographic process with the polymeric PAG, the protecting groups of the linker molecules self-assembled onto a glass plate were micropatterned to produce an amine pattern for the microarray of oligonucleotides. The acids generated from the polymeric PAG effectively deprotect the acid-labile protecting groups of the linker molecules through a chemical amplification process in the exposed region. After the treatment of the patterned amino groups with a fluorescent dye, the pattern profiles were observed with a fluorescence scanner. The fluorescence image reveals a well-defined pattern at a micro level, which clearly indicates that the polymeric PAGs have a great potential in photochemical surface modification for the microarray of oligonucleotides.
机译:为了在光刻过程中实现对表面的直接光化学修饰的轻松旋涂和提高的效率,我们将光酸产生剂(PAG)纳入了聚合物主链。合成双-(4-羟基-苯基)-(4-甲氧基-3,5-二甲基-苯基)-氯化chloride作为单体,并与癸二酰氯和对苯二甲酰氯聚合。通过离子交换反应将所得的氯化物盐形式的聚合物PAG转化为对甲苯磺酸盐和1-萘酚-5-磺酸盐形式。通过用聚合物PAG进行的光刻工艺,对自组装在玻璃板上的接头分子的保护基进行微构图,以产生用于寡核苷酸微阵列的胺构图。由聚合物PAG产生的酸通过暴露区域中的化学扩增过程有效地保护了连接分子的酸不稳定的保护基。用荧光染料处理图案化的氨基之后,用荧光扫描仪观察图案轮廓。荧光图像在微观水平上显示出清晰的图案,这清楚地表明,对于寡核苷酸微阵列,聚合物PAG在光化学表面修饰中具有巨大潜力。

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