Lin Rui-Biao, Li Libo, Zhou Hao-Long, Wu Hui, He Chaohui, Li Shun, Krishna Rajamani, Li Jinping, Zhou Wei, Chen Banglin
Department of Chemistry, University of Texas at San Antonio, San Antonio, TX, USA.
Research Institute of Special Chemicals, Taiyuan University of Technology, Taiyuan, China.
Nat Mater. 2018 Dec;17(12):1128-1133. doi: 10.1038/s41563-018-0206-2. Epub 2018 Nov 5.
There are great challenges in developing efficient adsorbents to replace the currently used and energy-intensive cryogenic distillation processes for olefin/paraffin separation, owing to the similar physical properties of the two molecules. Here we report an ultramicroporous metal-organic framework [Ca(CO)(HO)], synthesized from calcium nitrate and squaric acid, that possesses rigid one-dimensional channels. These apertures are of a similar size to ethylene molecules, but owing to the size, shape and rigidity of the pores, act as molecular sieves to prevent the transport of ethane. The efficiency of this molecular sieve for the separation of ethylene/ethane mixtures is validated by breakthrough experiments with high ethylene productivity under ambient conditions. This material can be easily synthesized at the kilogram scale using an environmentally friendly method and is water-stable, which is important for potential industrial implementation. The strategy of using highly rigid metal-organic frameworks with well defined and rigid pores could also be extended to other porous materials for chemical separation processes.
由于烯烃/石蜡这两种分子具有相似的物理性质,开发高效吸附剂以取代目前使用的、能耗高的低温蒸馏工艺来进行烯烃/石蜡分离面临着巨大挑战。在此,我们报道了一种由硝酸钙和方酸合成的超微孔金属有机框架材料[Ca(CO)(HO)],它具有刚性的一维通道。这些孔径与乙烯分子大小相近,但由于孔的尺寸、形状和刚性,其起到分子筛的作用,可阻止乙烷的传输。通过在环境条件下进行的具有高乙烯生产率的突破实验,验证了这种分子筛对乙烯/乙烷混合物的分离效率。这种材料可以使用环保方法轻松地按千克规模合成,并且具有水稳定性,这对于潜在的工业应用非常重要。使用具有明确且刚性孔的高刚性金属有机框架材料的策略也可以扩展到用于化学分离过程的其他多孔材料。