Reducing CO2 emission is an actual target of research due to its global warming effect. Adsorption of CO2 by metal-organic frameworks (MOFs) is a promising approach due to their large surface areas, adjustable pore shape, size and properties. One of the most potential strategy to enhance the CO2 capture capacity of MOFs is the incorporation of functionalities within the pores of MOFs to increase the MOFs?CO2 interactions. In this work, as an initial step to prepare new functionalized MOFs as adsorbents for CO2, we design and utilize palladium-catalyzed Sonogashira coupling reactions to synthesize a first organic linker containing both alkyne and nitro functionalities: linker 4-((4-carboxyphenyl)ethynyl)-3-nitrobenzoic acid. Two synthesis routes were investigated and the route using arylacetylenes without nitro group was the route of choice since it gives higher yield of couplings. All obtained compounds included intermediates were characterized by 1H and 13C NMR. The final linker was fully characterized by 1H, 13C NMR, mass and IR spectroscopies.
Tạp chí khoa học Trường Đại học Cần Thơ
Lầu 4, Nhà Điều Hành, Khu II, đường 3/2, P. Xuân Khánh, Q. Ninh Kiều, TP. Cần Thơ
Điện thoại: (0292) 3 872 157; Email: tapchidhct@ctu.edu.vn
Chương trình chạy tốt nhất trên trình duyệt IE 9+ & FF 16+, độ phân giải màn hình 1024x768 trở lên