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由 Brønsted 酸性金属有机骨架-808 催化的轻烯烃齐聚反应。

Oligomerization of Light Olefins Catalyzed by Brønsted-Acidic Metal-Organic Framework-808.

机构信息

Materials Sciences Division , Lawrence Berkeley National Laboratory , Berkeley , California 94720 , United States.

Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, School of Petrochemical Engineering , Changzhou University , Changzhou , Jiangsu 213164 , China.

出版信息

J Am Chem Soc. 2019 Jul 24;141(29):11557-11564. doi: 10.1021/jacs.9b03867. Epub 2019 Jul 12.

Abstract

Sulfated metal-organic framework-808 (S-MOF-808) exhibits strong Brønsted-acidic character which makes it a potential candidate for the heterogeneous acid catalysis. Here, we report the isomerization and oligomerization reactions of light olefins (C3-C6) over S-MOF-808 at relatively low temperatures and ambient pressure. Different products (dimers, isomers, and heavier oligomers) were obtained for different olefins, and effective C-C coupling was observed between isobutene and isopentene. Among the substrates investigated, facile oligomerization occurred very specifically for the structures with an α-double bond and two substituents at the second carbon atom of the main carbon chain. The possible oligomerization mechanism of light olefins was discussed based on the reactivity and selectivity trends. Moreover, the deactivation and regeneration of S-MOF-808 were investigated. The catalyst deactivates via two mechanisms which predominance depends on the substrate and reaction conditions. Above 110 °C, a loss of acidic sites was observed due to water desorption, and the deactivated catalyst could be regenerated by a simple treatment with water vapor. For C5 substrates and unsaturated ethers, the oligomers with increased molecular weight caused deactivation via blocking of the active sites, which could not be readily reversed. These findings offer the first systematic report on carbocation-mediated olefin coupling within MOFs in which the Brønsted acidity is associated with the secondary building units of the MOF itself and is not related to any guest substance hosted within its pore system.

摘要

硫酸化金属有机骨架-808(S-MOF-808)表现出强的布朗斯台德酸性,使其成为多相酸催化的潜在候选者。在这里,我们报告了在相对较低的温度和环境压力下,S-MOF-808 对低碳烯烃(C3-C6)的异构化和齐聚反应。不同的烯烃得到了不同的产物(二聚体、异构体和更重的齐聚物),并且观察到异丁烯和异戊烯之间的有效 C-C 偶联。在所研究的底物中,具有α-双键和主碳链第二个碳原子上有两个取代基的结构非常容易发生齐聚反应。根据反应性和选择性趋势,讨论了轻烯烃齐聚的可能机理。此外,还研究了 S-MOF-808 的失活和再生。催化剂通过两种机制失活,其优势取决于底物和反应条件。在 110°C 以上,由于水脱附而观察到酸性位的损失,失活的催化剂可以通过水蒸气的简单处理再生。对于 C5 底物和不饱和醚,增加分子量的齐聚物通过堵塞活性位导致失活,这是不容易逆转的。这些发现提供了第一个关于在 MOF 中通过碳正离子介导的烯烃偶联的系统报告,其中布朗斯台德酸度与 MOF 本身的次级结构单元有关,而与孔系统中容纳的任何客体物质无关。

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