Jin Fazheng, Lin En, Wang Tonghai, Geng Shubo, Wang Ting, Liu Wansheng, Xiong Fanhao, Wang Zhifang, Chen Yao, Cheng Peng, Zhang Zhenjie
State Key Laboratory of Medicinal Chemical Biology, College of Chemistry, Nankai University, Tianjin 300071, China.
Renewable Energy Conversion and Storage Center, Nankai University, Tianjin 300071, China.
J Am Chem Soc. 2022 Mar 30;144(12):5643-5652. doi: 10.1021/jacs.2c01058. Epub 2022 Mar 21.
Developing cost-/energy-efficient separation techniques for purifying ethylene from an ethylene/ethane mixture is highly important but very challenging in the industrial process. Herein, using a bottom-up [8 + 2] construction approach, we rationally designed and synthesized three three-dimensional covalent organic frameworks (COFs) with 8-connected networks, which can selectively remove ethane from an ethylene/ethane mixture with high efficiency. These COF materials, which are fabricated by the condensation reaction of a customer-designed octatopic aldehyde monomer with linear diamino linkers, possess high crystallinity, good structural robustness, and high porosity. Attributed to the well-organized micro-sized pores with a nonpolar/inert pore environment, these COFs display high ethane adsorption capacity and good selectivity over ethylene, making them among the best ethane-selective adsorbents for ethylene purification. Their excellent ethylene/ethane separation performance is validated by dynamic breakthrough experiments with high-purity ethylene (>99.99%) produced through a single adsorption process. The separation performance surpasses all reported CH-selective COFs and even some benchmark metal-organic frameworks. This work provides important guidance for the design of new adsorbents for value-added gas purification.
开发用于从乙烯/乙烷混合物中提纯乙烯的具有成本效益/能源效率的分离技术在工业过程中非常重要,但极具挑战性。在此,我们采用自下而上的[8 + 2]构建方法,合理设计并合成了三种具有8连接网络的三维共价有机框架(COF),它们能够高效地从乙烯/乙烷混合物中选择性去除乙烷。这些COF材料由定制设计的八官能醛单体与线性二胺连接体通过缩合反应制备而成,具有高结晶度、良好的结构稳定性和高孔隙率。由于具有组织良好的微米级孔隙以及非极性/惰性的孔环境,这些COF表现出高乙烷吸附容量和对乙烯的良好选择性,使其成为乙烯提纯中最佳的乙烷选择性吸附剂之一。通过单次吸附过程产生的高纯度乙烯(>99.99%)进行的动态突破实验验证了它们优异的乙烯/乙烷分离性能。该分离性能超过了所有已报道的CH选择性COF,甚至一些基准金属有机框架。这项工作为设计用于增值气体净化的新型吸附剂提供了重要指导。