Deng Wen-Chao, Qian Hai-Long, Yang Cheng, Xu Shu-Ting, Yan Xiu-Ping
State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi 214122, China.
International Joint Laboratory on Food Safety, Jiangnan University, Wuxi 214122, China.
ACS Appl Mater Interfaces. 2023 Nov 29;15(47):54977-54985. doi: 10.1021/acsami.3c13853. Epub 2023 Nov 14.
Covalent organic frameworks (COFs) are promising as stationary phases for gas chromatography (GC). The successful anchoring of COFs to the inner walls of the capillary with good uniformity is an important prerequisite to ensure the excellent separation performance of columns. However, current methods for the fabrication of COF-based capillary columns cannot always meet this requirement when faced with different COFs, which hampers the further development of COF-based GC stationary phases. Here, we show a general two-step method for the fabrication of COF-bound capillary column. The first step enables the formation of uniform amorphous polymer layer on the inner walls of capillary, while the second step allows the facile transformation of the amorphous polymer layer into a highly crystalline COF layer. COF-bound capillary columns with different framework structures were fabricated successfully by the developed two-step method. Impressively, the COF layers bound on the inner walls of these capillary columns showed good uniformity and high crystallinity. More importantly, as an example, the fabricated Tab-DHTA-bound capillary column showed good resolution ( > 1.5) and high column efficiency (700-39,663 plates m) for the tested isomers of ethylbenzene, xylene, dichlorobenzene, chlorotoluene, pinene, 1,3-dichloropropene, and propylbenzene with good precision (RSD, run-to-run, = 5) (retention time, 0.2-0.6%; peak area, 0.5-1.1%; and peak height, 0.5-1.4%). In general, the fabricated Tab-DHTA-bound capillary column exhibited better performance for the separation isomers than commercial columns DB-5 and HP-FFAP. These results indicate that the two-step method is an efficient way to fabricate the COF-bound capillary column with excellent separation performance.
共价有机框架材料(COFs)有望成为气相色谱(GC)的固定相。将COFs成功且均匀地锚定在毛细管内壁上是确保色谱柱具有出色分离性能的重要前提。然而,当前制备基于COF的毛细管柱的方法在面对不同的COFs时,并不总能满足这一要求,这阻碍了基于COF的GC固定相的进一步发展。在此,我们展示了一种制备COF键合毛细管柱的通用两步法。第一步能在毛细管内壁形成均匀的无定形聚合物层,而第二步可使无定形聚合物层轻松转化为高度结晶的COF层。通过所开发的两步法成功制备了具有不同框架结构的COF键合毛细管柱。令人印象深刻的是,这些毛细管柱内壁上键合的COF层显示出良好的均匀性和高结晶度。更重要的是,作为一个例子,所制备的Tab-DHTA键合毛细管柱对乙苯、二甲苯、二氯苯、氯甲苯、蒎烯、1,3 - 二氯丙烯和丙苯的测试异构体显示出良好的分离度(> 1.5)和高柱效(700 - 39,663 塔板数/米),且精密度良好(RSD,批内,= 5)(保留时间,0.2 - 0. $6%$;峰面积,0.5 - 1.1%;峰高,0.5 - 1.4%)。总体而言,所制备的Tab-DHTA键合毛细管柱在分离异构体方面表现优于商业柱DB - 5和HP - FFAP。这些结果表明,两步法是制备具有出色分离性能的COF键合毛细管柱的有效方法。