Laboratory for Chemistry and Life Science, Institute of Innovative Research Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama, 226-8503, Japan.
Nanospace Catalysis Unit Institute of Innovative Research, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama, 226-8503, Japan.
Chemistry. 2022 Dec 27;28(72):e202202825. doi: 10.1002/chem.202202825. Epub 2022 Oct 28.
Development of porous materials capable of capturing volatile organic compounds (VOCs), such as benzene and its derivatives, with high efficiency, selectivity, and reusability is highly demanded. Here we report unusual vapor adsorption behavior toward VOCs by a new porous solid, composed of a polyaromatic capsule bearing a spherical nanocavity with subnano-sized windows. Without prior crystallization and high-temperature vacuum drying, the porous polyaromatic solid exhibits the following five features: vapor adsorption of benzene over cyclohexane with 90 % selectivity, high affinity toward o-xylene over benzene and toluene with >80 % selectivity, ortho-selective adsorption ability (>50 %) from mixed xylene isomers, tight VOCs storage even under high temperature and vacuum conditions, and at least 5 times reusability for xylene adsorption. The observed adsorption abilities are accomplished at ambient temperature and pressure within 1 h, which has not been demonstrated by organic/inorganic porous materials reported previously.
开发能够高效、选择性和可重复使用地捕获挥发性有机化合物(VOCs),如苯及其衍生物的多孔材料是非常需要的。在这里,我们报道了一种新的多孔固体对 VOCs 的异常蒸汽吸附行为,该多孔固体由带有球形纳米腔的多环芳烃胶囊组成,具有亚纳米大小的窗口。无需预先结晶和高温真空干燥,多孔多环芳烃固体就具有以下五个特点:对苯蒸气的环己烷吸附具有 90%的选择性,对邻二甲苯的苯和甲苯具有 >80%的选择性,对混合二甲苯异构体具有邻位选择性吸附能力(>50%),即使在高温和真空条件下,对 VOCs 的存储也很紧密,并且对二甲苯吸附的可重复使用性至少为 5 倍。在 1 小时内,在环境温度和压力下即可实现观察到的吸附能力,这是以前报道的有机/无机多孔材料所没有达到的。