Department of Chemical and Biological Engineering , Korea University , 02841 Seoul , South Korea.
J Am Chem Soc. 2020 Feb 19;142(7):3479-3488. doi: 10.1021/jacs.9b11958. Epub 2020 Feb 10.
Proton-transfer photopolymerization through the thiol-epoxy "click" reaction is shown to be a versatile new method for the fabrication of micro- and nanosized polymeric patterns. In this approach, complexation of a guanidine base, diazabicycloundecene (DBU), with benzoylphenylpropionic acid (ketoprofen) generates a photolabile salt. Under illumination at a wavelength of 365 nm, the salt undergoes a photodecarboxylation reaction to release DBU as a base. The base-catalyzed ring opening reaction then creates cross-linked poly(β-hydroxyl thio-ether) patterns. The surface chemistry of these patterns can be altered through alkylation of the thio-ether linkages. For example, a reaction with bromoacetic acid produces a hitherto unknown sulfonium/carboxylate-based zwitterionic motif that endows antibiofouling capacity to the micropatterns.
通过巯基-环氧“点击”反应的质子转移光聚合被证明是一种用于制造微纳米尺寸聚合物图案的通用新方法。在该方法中,胍基,二氮杂二环十一碳烯(DBU)与苯甲酰基苯丙酸(酮洛芬)的络合生成光不稳定盐。在 365nm 的波长下照射时,盐经历光脱羧反应,释放出 DBU 作为碱。然后,碱催化的开环反应生成交联的聚(β-羟基硫醚)图案。通过硫醚键的烷基化可以改变这些图案的表面化学性质。例如,与溴乙酸的反应产生了一种迄今为止未知的基于硫鎓/羧酸的两性离子基序,赋予微图案抗生物污染的能力。