Zhang Hujun, Tang Jie, Yu Chunze, Zhang Muyu, Wang Jiaqi, Duan Jingui
State Key Laboratory of Chemistry and Utilization of Carbon-Based Energy Resources, College of Chemistry, Xinjiang University Urumqi 830017 China.
State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University Nanjing 211816 China
Chem Sci. 2025 Jun 2. doi: 10.1039/d5sc01755f.
Light olefins, such as ethylene (CH) and propylene (CH), are essential feedstocks for the production of chemical products. However, the current purification strategy of distillation is energy-intensive and results in high carbon emissions. Adsorptive separation, the selective capture of gas from mixtures by porous materials, is considered a promising alternative or transitional technology. Metal-organic frameworks (MOFs), a kind of porous material with highly tunable nature, have emerged as an innovative chemistry in the past two decades, offering solutions for separating these small gases. This review highlights recent advances in the design and engineering of advanced MOFs, with a focus on precise control over their pore structure and functionality for the adsorption-based purification of CH and CH from the corresponding hydrocarbons with the same carbon number. The importance of rational design in achieving specific functionalities, such as functional sites and molecular sieving in rigid MOFs and local/global dynamics in soft MOFs, is underscored, with examples demonstrating enhanced performance in selective adsorption separation. Additionally, methods and examples of large-scale synthesis of MOFs are briefly described. The goal is to present the state-of-the-art chemistry and applications of MOFs and to offer an outlook towards discovering and designing further new materials.
轻质烯烃,如乙烯(CH₂)和丙烯(CH₃),是生产化学产品的重要原料。然而,当前的蒸馏提纯策略能耗高且碳排放量大。吸附分离,即通过多孔材料从混合物中选择性捕获气体,被认为是一种有前景的替代或过渡技术。金属有机框架(MOF)是一种性质高度可调的多孔材料,在过去二十年中已成为一种创新化学领域,为分离这些小分子气体提供了解决方案。本综述重点介绍了先进MOF设计与工程方面的最新进展,着重于精确控制其孔结构和功能,以便从具有相同碳原子数的相应烃类中基于吸附提纯CH₂和CH₃。强调了合理设计在实现特定功能方面的重要性,如刚性MOF中的功能位点和分子筛作用以及柔性MOF中的局部/全局动力学,并举例说明了在选择性吸附分离中性能的提升。此外,还简要描述了MOF大规模合成的方法和实例。目的是展示MOF的最新化学和应用,并展望发现和设计更多新材料的前景。