Designing Molecular Printboards: A Photolithographic Platform for Recodable Surfaces
作者:Doris Abt、Bernhard V. K. J. Schmidt、Ognen Pop-Georgievski、Alexander S. Quick、Denis Danilov、Nina Yu. Kostina、Michael Bruns、Wolfgang Wenzel、Martin Wegener、Cesar Rodriguez-Emmenegger、Christopher Barner-Kowollik
DOI:10.1002/chem.201501707
日期:2015.9.14
biointerfaces. Precision photolithography of a modified β‐CD was established on a light sensitive tetrazole surface immobilized on a bioinspired polydopamine (PDA) anchor layer via various shadow masks, as well as via direct laser writing (DLW), in order to craft any desired printboard design. Interfacial molecular recognition provided by light generated cavitate domains was demonstrated via spatially resolved
介绍了一种基于光诱导的基于β-环糊精(CD)的超分子器件设计策略,为构建多功能生物界面提供了一种新颖的工具。修饰的β -CD的精密光刻技术是通过各种荫罩以及直接激光书写(DLW)固定在生物启发的聚多巴胺(PDA)锚固层上的光敏四唑表面上的,目的是进行任何所需的印制板设计。光产生的空化域提供的界面分子识别是通过空间分辨的编码,擦除和重新编码不同的超分子客体模式来证明的。因此,受体单层的光引导成形引入了控制各种表面上的超分子组装的有效途径。