Idrees Karam B, Kirlikovali Kent O, Setter Caitlin, Xie Haomiao, Brand Helen, Lal Bhajan, Sha Fanrui, Smoljan Courtney S, Wang Xiaoliang, Islamoglu Timur, Macreadie Lauren K, Farha Omar K
Department of Chemistry, Northwestern University, Evanston, Illinois 60208, United States.
School of Chemistry, The University of New South Wales, Kensington, New South Wales 2052, Australia.
J Am Chem Soc. 2023 Nov 1;145(43):23433-23441. doi: 10.1021/jacs.3c04641. Epub 2023 Oct 20.
Hexane isomers play a vital role as feedstocks and fuel additives in the petrochemical industry. However, their similar physical and chemical properties lead to significant challenges in the separation process. Traditional thermal separation techniques are energy-intensive and lead to significant carbon footprint penalties. As such, there is a growing demand for the development of less energy-intensive nonthermal separation methods. Adsorption-based separation methods, such as using solid sorbents or membranes, have emerged as promising alternatives to distillation. Here, we report the successful synthesis of two novel metal-organic frameworks (MOFs), NU-2004 and NU-2005, by incorporating a carborane-based three-dimensional (3D) linker and using aluminum and vanadium nodes, respectively. These MOFs exhibit exceptional thermal stability and structural rigidity compared to other MIL-53 analogues, which is further corroborated using synchrotron studies. Furthermore, the inclusion of the quasi-spherical 3D linker in NU-2004 demonstrates significant advancements in the separation of hexane isomers compared to other MIL MOFs containing two-dimensional (2D) and aliphatic 3D linkers.
己烷异构体在石化行业中作为原料和燃料添加剂发挥着至关重要的作用。然而,它们相似的物理和化学性质给分离过程带来了巨大挑战。传统的热分离技术能耗高,会导致显著的碳足迹惩罚。因此,对开发能耗较低的非热分离方法的需求日益增长。基于吸附的分离方法,如使用固体吸附剂或膜,已成为蒸馏的有前途的替代方法。在此,我们报告了通过分别引入基于碳硼烷的三维(3D)连接体并使用铝和钒节点,成功合成了两种新型金属有机框架(MOF),即NU-2004和NU-2005。与其他MIL-53类似物相比,这些MOF表现出卓越的热稳定性和结构刚性,同步加速器研究进一步证实了这一点。此外,与其他包含二维(2D)和脂肪族3D连接体的MIL MOF相比,NU-2004中包含的准球形3D连接体在己烷异构体分离方面显示出显著进展。