Park Jin Hyuk, Choi Hyun, Cui Chunzhi, Ahn Dong June
Department of Chemical and Biological Engineering and KU-KIST Graduate School of Converging Science and Technology, Korea University, Seoul 02841, Korea.
ACS Omega. 2017 Oct 31;2(10):7444-7450. doi: 10.1021/acsomega.7b01141.
By utilizing the capillary-force-driven action, a novel polydiacetylene-based sensor on the porous silica plate was developed within 30 s for π-diacetylene monomers with variable chain lengths. This method enables one to utilize diacetylene monomers even with the shorter alkyl chain length of C18-C21, which has not been possible with conventional methods. The invented sensor platform employing shorter monomers was found to perform better, as was demonstrated for gaseous and aqueous analytes, i.e., ammonia gas and nucleic acids in aqueous phase. This new polydiacetylene platform opens up the development of quick and easy fabrication and the use of chemical and biochemical chips.
通过利用毛细作用力驱动,在30秒内开发出了一种基于聚二乙炔的新型传感器,该传感器位于多孔硅胶板上,用于检测具有不同链长的π-二乙炔单体。这种方法能够利用烷基链长度较短(C18 - C21)的二乙炔单体,而传统方法无法做到这一点。已发现采用较短单体的发明传感器平台表现更佳,气态和水性分析物(即气相中的氨气和水相中的核酸)的检测结果证明了这一点。这种新型聚二乙炔平台开启了快速简便制造以及化学和生化芯片应用的发展。