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Condensation of organic vapours within nanoporous calixarene thin films

机译:纳米多孔杯芳烃薄膜中有机蒸气的冷凝

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摘要

Adsorption of vapours of benzene, toluene, p-xylene, aniline, hexane and chloroform in LB films of two novel calix[4]resorcinarene derivatives was studied in situ using quartz-crystal microbalance (QCM), ellipsometry and surface plasmon resonance (SPR) techniques. Isotherms of adsorption obtained by both QCM and SPR show that the adsorption ability depends on the condensed vapour pressures of the adsorbates rather than on a structural coincidence between host cavities and guest molecules. The results were interpreted in terms of capillary condensation of organic vapours in the nanoporous matrix of calixarene LB films accompanied by film swelling. Ellipsometric measurements show changes of both the thickness and refractive index of the LB films caused by adsorption, and thus confirm condensation and further accumulation of liquid adsorbate within the film matrix. Unusual adsorption kinetics were observed only when the vapour injection technique was used and their occurrence is believed to be caused by initial vapour condensation on the film surface. This can be eliminated by measurements under constant vapour flow. [References: 32]
机译:使用石英晶体微量天平(QCM),椭偏仪和表面等离子体共振(SPR)原位研究了两种新型杯[4]间角芳烃衍生物的LB膜中苯,甲苯,对二甲苯,苯胺,己烷和氯仿的蒸气吸附。技术。通过QCM和SPR获得的吸附等温线表明,吸附能力取决于被吸附物的冷凝蒸汽压,而不取决于主体腔体与客体分子之间的结构重合。结果以杯状芳烃LB膜的纳米孔基质中有机蒸气的毛细管冷凝伴随膜溶胀的方式解释。椭偏测量显示了由吸附引起的LB膜的厚度和折射率的变化,因此证实了冷凝和液体被吸附物在膜基质内的进一步积聚。仅当使用蒸汽注入技术时才观察到异常的吸附动力学,并且认为其发生是由于膜表面上的初始蒸汽凝结引起的。这可以通过在恒定蒸汽流量下进行测量来消除。 [参考:32]

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