Department of Materials Science and Engineering, College of Engineering, Seoul National University , Seoul 08826, Korea.
ACS Appl Mater Interfaces. 2017 Nov 1;9(43):38081-38088. doi: 10.1021/acsami.7b14807. Epub 2017 Oct 17.
We report a compressible monolithic catalyst based on a microporous organic polymer (MOP) sponge. The monolithic MOP sponge was synthesized via Sonogashira-Hagihara coupling reaction between 1,4-diiodotetrafluorobenzene and 1,3,5-triethynylbenzene in a cosolvent of toluene and TEA (2:1, v/v) without stirring. The MOP sponge had an intriguing microstructure, where tubular polymer fibers having a diameter of hundreds of nanometers were entangled. It showed hierarchical porosity with a Brunauer-Emmett-Teller (BET) surface area of 512 m g. The MOP sponge was functionalized with sulfur groups by the thiol-yne reaction. The functionalized MOP sponge exhibited a higher BET surface area than the MOP sponge by 13% due to the increase in the total pore and micropore volumes. A MOP sponge-Ag heterogeneous catalyst (S-MOPS-Ag) was prepared by in situ growth of silver nanoparticles inside the sulfur-functionalized MOP sponge by the reduction of Ag ions. The catalytic activity of S-MOPS-Ag was investigated for the reduction reaction of 4-nitrophenol in an aqueous condition. When S-MOPS-Ag was compressed and released during the reaction, the rate of the reaction was considerably increased. S-MOPS-Ag was easily removed from the reaction mixture owing to its monolithic character and was reused after washing and drying.
我们报告了一种基于微孔有机聚合物(MOP)海绵的可压缩整体催化剂。整体 MOP 海绵是通过 1,4-二碘四氟苯和 1,3,5-三乙炔基苯在甲苯和 TEA(2:1,v/v)的混合溶剂中进行 Sonogashira-Hagihara 偶联反应而无需搅拌合成的。MOP 海绵具有有趣的微观结构,其中数百纳米直径的管状聚合物纤维相互缠绕。它具有分级多孔性,比表面积为 512 m²/g。通过硫醇-炔反应将 MOP 海绵官能化,官能化的 MOP 海绵的比表面积比 MOP 海绵高 13%,这是由于总孔和微孔体积的增加。通过在硫官能化的 MOP 海绵内部还原银离子原位生长银纳米粒子,制备了 MOP 海绵-银异质催化剂(S-MOPS-Ag)。研究了 S-MOPS-Ag 在水相条件下还原 4-硝基苯酚反应中的催化活性。当 S-MOPS-Ag 在反应过程中被压缩和释放时,反应速率大大提高。由于其整体特性,S-MOPS-Ag 很容易从反应混合物中去除,并在洗涤和干燥后重复使用。