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Mass-Sensitive Solvent Vapor Detection with Calix[4]resorcinarenes: Tuning Sensitivity and Predicting Sensor Effects

机译:用杯[4]间苯二芳烃检测质量敏感的溶剂蒸气:调节灵敏度并预测传感器效应

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摘要

Preorganized calix[4]resorcinarenes forming vaselike cavities are tested with respect to their chemical sensing capabilities as coatings on mass-sensitive devices. A synthetically modified vaselike host molecule with a definite cavity morphology forms densely packed layers for measurements with a SAW oscillator. In contrast to this detection of surface phenomena with ultrathin layers, QCM resonators require bulky microporous coatings with a high vapor permeability. Thus, short response times are attained even for layers using bulk effects, which are necessary to compensate the smaller sensitivity of the QCM. A 3-fold substitution of a basic calix[4]resorcinarene cavity with 2,3-dichloroquinoxaline provides a one-side-opened structure forming a molecular entrance for the easy access of analyte molecules. In combination with aliphatic spacers, this material fulfills the required demands of high sensitivity and short response times, and the detection of solvents in the gas phase to 2.5 ppm is realized. The sensor effects of the established coatings are correlated to host-guest stabilization enthalpies which were calculated by force field methods. An improved thermodynamic model that considers entropies of condensation is tested successfully for the prediction of the sensor behavior.
机译:测试了形成花瓶状腔体的预组织杯[4]间苯二甲酰芳烃的化学感应能力(作为对质量敏感的设备的涂层)。具有确定的腔形态的合成修饰的花瓶状宿主分子形成了紧密堆积的层,用于用SAW振荡器进行测量。与通过超薄层检测表面现象相反,QCM谐振器需要具有高蒸气渗透性的大体积微孔涂层。因此,即使对于使用体效应的层,也可获得较短的响应时间,这是补偿QCM较小灵敏度所必需的。用2,3-二氯喹喔啉对基本杯[4]间苯二甲烯腔的3倍取代提供了一侧开口的结构,形成了一个易于进入分析物分子的分子入口。与脂族间隔基结合使用,该材料可以满足高灵敏度和短响应时间的要求,并且可以检测气相中2.5 ppm以下的溶剂。建立的涂层的传感器效应与通过力场法计算的客体稳定焓相关。考虑到冷凝熵的改进热力学模型已成功测试了传感器行为的预测。

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