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从较大和较小同系物中对苯乙烯进行中等大小的分子筛。

Intermediate-sized molecular sieving of styrene from larger and smaller analogues.

机构信息

MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, School of Chemistry, Sun Yat-Sen University, Guangzhou, China.

National Supercomputer Center in Guangzhou, School of Data and Computer Science, Sun Yat-Sen University, Guangzhou, China.

出版信息

Nat Mater. 2019 Sep;18(9):994-998. doi: 10.1038/s41563-019-0427-z. Epub 2019 Jul 15.

Abstract

Molecular sieving can lead to ultrahigh selectivity and low regeneration energy because it completely excludes all larger molecules via a size restriction mechanism. However, it allows adsorption of all molecules smaller than the pore aperture and so separations of complicated mixtures can be hindered. Here, we report an intermediate-sized molecular sieving (iSMS) effect in a metal-organic framework (MAF-41) designed with restricted flexibility, which also exhibits superhydrophobicity and ultrahigh thermal/chemical stabilities. Single-component isotherms and computational simulations show adsorption of styrene but complete exclusion of the larger analogue ethylbenzene (because it exceeds the maximal aperture size) and smaller toluene/benzene molecules that have insufficient adsorption energy to open the cavity. Mixture adsorption experiments show a high styrene selectivity of 1,250 for an ethylbenzene/styrene mixture and 3,300 for an ethylbenzene/styrene/toluene/benzene mixture (orders of magnitude higher than previous reports). This produces styrene with a purity of 99.9%+ in a single adsorption-desorption cycle. Controlling/restricting flexibility is the key for iSMS and can be a promising strategy for discovering other exceptional properties.

摘要

分子筛可以通过尺寸限制机制完全排除所有较大的分子,从而实现超高的选择性和低的再生能量。然而,它允许所有小于孔径的分子吸附,因此复杂混合物的分离可能会受到阻碍。在这里,我们报告了一种具有受限柔韧性的金属有机骨架(MAF-41)中的中等尺寸分子筛(iSMS)效应,它还表现出超疏水性和超高的热/化学稳定性。单组分等压线和计算模拟表明,苯乙烯被吸附,但较大的类似物乙基苯(因为它超过了最大孔径尺寸)和较小的甲苯/苯分子完全被排斥,因为它们的吸附能不足以打开空腔。混合物吸附实验表明,对于乙基苯/苯乙烯混合物,苯乙烯的选择性高达 1250,对于乙基苯/苯乙烯/甲苯/苯混合物,选择性高达 3300(比以前的报道高出几个数量级)。这使得在单个吸附-解吸循环中可以获得纯度为 99.9%+的苯乙烯。控制/限制柔韧性是 iSMS 的关键,并且可能是发现其他特殊性质的有前途的策略。

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