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用于检测硝基芳香族炸药和去除有害有机蒸气的发光和可溶胀共轭微孔聚合物。

Luminescent and Swellable Conjugated Microporous Polymers for Detecting Nitroaromatic Explosives and Removing Harmful Organic Vapors.

机构信息

School of Chemistry , University of Bristol , Bristol , England BS8 1TS , U.K.

Department of Chemistry , University College London , London , England WC1H 0AJ , U.K.

出版信息

ACS Appl Mater Interfaces. 2019 Dec 26;11(51):48352-48362. doi: 10.1021/acsami.9b16767. Epub 2019 Dec 13.

Abstract

Four new conjugated microporous polymers (CMPs) were synthesized by a Buchwald-Hartwig (BH) cross-coupling reaction of tri- and tetrafunctionalized precursors to yield materials with tunable surface area and pore size distribution. This approach yielded , CMPs with significantly higher Brunauer-Emmett-Teller (BET) surface areas (more than 5 times higher) than other related BH-based CMPs. These CMPs possess not only high BET specific surface areas and high chemical and thermal stabilities, but also exhibit outstanding swellability. To the best of our knowledge, swellable behavior was studied in great detail for CMPs for the first time, with the greatest degree of swelling for methanol reaching 16.5 and 16.3 mL g for and , respectively. Owing to their excellent swellability, we further studied the adsorption capacity of these CMPs for different toxic organic vapors (including toluene and methanol). and adsorbed 124 and 117 mg g toluene, respectively, at saturated vapor pressure. For methanol, the adsorption capacities of and were up to 250 and 215 mg g, respectively, which are the highest recorded values when compared with published data for CMPs, HCPs, MOFs, and porous carbons. These materials are promising candidates for the removal and elimination of hazardous organic vapors and chemical warfare agents. Moreover, all the polymers show high sensitivity to nitroaromatic explosives. and exhibit high selectivity for TNT and may be suitable as new candidates to selectively detect TNT for security or environmental applications.

摘要

四种新的共轭微孔聚合物(CMPs)通过三官能和四官能化前体的 Buchwald-Hartwig(BH)交叉偶联反应合成,得到具有可调表面积和孔径分布的材料。这种方法得到的 CMPs 的 Brunauer-Emmett-Teller(BET)表面积明显高于其他基于 BH 的 CMPs(高出 5 倍以上)。这些 CMPs 不仅具有高 BET 比表面积和高化学及热稳定性,而且还表现出优异的溶胀性能。据我们所知,首次详细研究了溶胀行为的 CMPs,甲醇的溶胀度最大,分别达到 16.5 和 16.3 mL g-1。由于其优异的溶胀性能,我们进一步研究了这些 CMPs 对不同有毒有机蒸气(包括甲苯和甲醇)的吸附能力。和分别在饱和蒸气压下吸附了 124 和 117 mg g-1甲苯。对于甲醇,和的吸附容量分别高达 250 和 215 mg g-1,与已发表的 CMPs、HCPs、MOFs 和多孔碳的数据相比,这是最高的记录值。这些材料有望成为去除和消除危险有机蒸气和化学战剂的候选材料。此外,所有聚合物对硝基芳烃炸药都表现出高灵敏度。和对 TNT 表现出高选择性,可能适合作为新的候选物,用于安全或环境应用中选择性检测 TNT。

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