Fluorine-mediated single-step ethylene purification in face-transitive metal-organic frameworks from binary to ternary gas mixtures

IF 7.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Wei-Hong Zhang, Ya-Nan Ma, Guo-Tong Du, Ping Wang, Dong-Xu Xue
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Abstract

Ethylene is a pivotal feedstock for the chemical industry. Obtaining polymer-grade ethylene in a single step from either binary ethane/ethylene or ternary acetylene/ethane/ethylene mixtures via porous adsorbents is highly energy-efficient yet remains a formidable challenge. Face-transitive topologies, a particular class of nets in reticular chemistry, possess only one window type and thus hold exceptional promise for discriminating between closely related C₂ hydrocarbons. Guided by the nia-d topology, we synthesized two isoreticular, trinuclear-manganese-cluster-based, ternary metal–organic frameworks (MOFs), namely nia-d-TZB and nia-d-FTZB, under solvothermal conditions using MnCl₂, the tritopic linker 2,4,6-tri(4-pyridyl)-1,3,5-triazine (TPT), and the heterofunctional linear linkers 4-(1H-tetrazol-5-yl) benzoic acid (H2TZB) or 2-fluoro-4-(1H-tetrazol-5-yl)benzoic acid (H2FTZB). Although the resultant trigonal-bipyramidal cages remain dimensionally invariant, the introduction of fluorine in the latter linker subtly reduces the size of the antiprismatic cages and the sole triangular window in nia-d-FTZB. Single-component adsorption isotherms reveal that nia-d-TZB preferentially adsorbs ethane, whereas nia-d-FTZB preferentially adsorbs both acetylene and ethane. Consequently, nia-d-TZB enables one-step purification of ethylene from an ethane/ethylene mixture, while nia-d-FTZB achieves simultaneous removal of acetylene and ethane from an acetylene/ethane/ethylene ternary stream, again delivering polymer-grade ethylene in a single pass. These findings are corrob­orated by ideal adsorbed solution theory (IAST), breakthrough experiments with both binary and ternary gas mixtures, and detailed theoretical simulations. This study furnishes compelling evidence for the rational design of face-transitive MOFs to tackle complex gas-separation tasks.
从二元到三元气体混合物的面过渡金属-有机框架中氟介导的单步乙烯净化
乙烯是化学工业的关键原料。通过多孔吸附剂从二元乙烷/乙烯或三元乙炔/乙烷/乙烯混合物中一步获得聚合物级乙烯是一种高能效的方法,但仍然是一项艰巨的挑战。面传递拓扑结构是网状化学中的一类特殊网络,它只有一种窗口类型,因此在区分密切相关的碳₂碳氢化合物方面具有特殊的前景。在ni -d拓扑结构的指导下,我们在溶剂热条件下,用MnCl 2、三羟基连接剂2,4,6-三(4-吡啶基)-1,3,5-三嗪(TPT)和杂官能线性连接剂4-(1h -四唑-5-基)苯甲酸(H2TZB)或2-氟-4-(1h -四唑-5-基)苯甲酸(H2FTZB)合成了两个等晶格、三核锰簇基三元金属有机骨架(mfs),即ni -d- tzb和ni -d- ftzb。虽然所得到的三角-双锥体笼在尺寸上保持不变,但在后一种连接剂中引入氟,巧妙地减小了nia-d-FTZB中反棱镜笼和唯一三角形窗口的尺寸。单组分吸附等温线表明,ni -d- tzb优先吸附乙烷,而ni -d- ftzb优先吸附乙炔和乙烷。因此,nia-d-TZB可以从乙烷/乙烯混合物中一步提纯乙烯,而nia-d-FTZB可以同时从乙炔/乙烷/乙烯三元流中去除乙炔和乙烷,再次一次传递聚合物级乙烯。这些发现被理想吸附溶液理论(IAST)、二元和三元气体混合物的突破性实验以及详细的理论模拟所证实。该研究为合理设计面传递mof以解决复杂的气体分离任务提供了有力的证据。
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来源期刊
Chemical Science
Chemical Science CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
4.80%
发文量
1352
审稿时长
2.1 months
期刊介绍: Chemical Science is a journal that encompasses various disciplines within the chemical sciences. Its scope includes publishing ground-breaking research with significant implications for its respective field, as well as appealing to a wider audience in related areas. To be considered for publication, articles must showcase innovative and original advances in their field of study and be presented in a manner that is understandable to scientists from diverse backgrounds. However, the journal generally does not publish highly specialized research.
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