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Organic Zeolites from a Diolefinic Monomer

机译:二烯烃单体的有机沸石

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Submicrometer particles of diethyl p-phenylenediacrylate (EPA) with tunable molecular adsorption characteristics were produced by solid-state photopolymerization in the presence of template molecules. EPA monomer particles were produced by rapid expansion of supercritical solutions (RESS), and deposited directly onto surface acoustic wave (SAW) resonators. The EPA particles were photopolymerized directly on the SAW devices in the presence of molecular templates, and dynamic sorption isotherms of C_1- through C_9-alkanes were studied to characterize the particle—vapor interaction. The mass increase due to vapor uptake into the particulate coatings was measured by monitoring the SAW resonance frequency during vapor sorption. The vapor selectivity and molecular porosity of the particulate coatings were studied in situ on the piezoelectric substrate by measuring sorption isotherms. A gradual exclusion of smaller alkane molecules from the molecularly imprinted particulate coatings was observed with decreasing template molecule size. The observed selective and reversible adsorption of alkane analytes with different molecular sizes suggest that these imprinted polymers may be categorized as organic analogues of zeolites.
机译:具有可调分子吸附特性的对亚乙基二苯二丙烯酸二乙酯(EPA)的亚微米颗粒是通过在模板分子存在下进行固态光聚合而制得的。 EPA单体颗粒是通过超临界溶液(RESS)的快速膨胀而产生的,并直接沉积在声表面波(SAW)谐振器上。在分子模板存在的情况下,将EPA颗粒直接在SAW装置上进行光聚合,并研究了C_1-至C_9-烷烃的动态吸附等温线,以表征颗粒与蒸汽的相互作用。通过监测蒸汽吸收过程中的SAW共振频率来测量由于蒸汽吸收到颗粒涂层中引起的质量增加。通过测量吸附等温线,在压电基板上原位研究了颗粒涂层的蒸气选择性和分子孔隙率。随着模板分子尺寸的减小,观察到较小的烷烃分子逐渐从分子印迹颗粒涂层中排除。观察到的具有不同分子大小的烷烃分析物的选择性和可逆吸附表明,这些印迹聚合物可以归类为沸石的有机类似物。

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