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Surface phenomena with organic coatings for chemical sensing

机译:有机涂层的表面现象用于化学传感

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The surface modification of SAW (surface acoustic wave)- and QCM (quartz crystal microbalance)-devices proves very important in chemical sensing. Silanes on one hand are very useful for hydrophobizing of quartz-surfaces whereas on the other hand thiols are used to adsorb on gold. In this way the influence of humidity on the transducers, which originates in the hydrophilicity of the quartz is decreased. These monolayers not only reduce the cross-sensitivity to water but also enhance the sensor effects of solvent vapors. In order to obtain better selectivity molecular hollows, like calix[n]arenes can be attached to the spacers. Another way to improve the selectivity was found in the treatment of the device with mixtures of silanes and thiols, respectively. In this way cavities are produced in which analytes are incorporated and thus are detected in the lower ppm range. The surface of mass-sensitive devices was also modified in order to detect analytes in the nano- to micrometer range. Here a stamping process with cells yields patterns on polymer surfaces which favor the reinclusion of these microorganisms. These effects are due to geometrical effects and chemical interactions via an adapted polarity and hydrogen bonds of the chosen polymer. The sensor responses proved highly selective to the bacteria in respect to nutrient liquid and other microorganisms.
机译:SAW(表面声波)和QCM(石英晶体微天平)设备的表面改性在化学传感中非常重要。一方面,硅烷对于石英表面的疏水化非常有用,而另一方面,硫醇用于吸附在金上。这样,减少了由于石英的亲水性而引起的湿度对换能器的影响。这些单层膜不仅降低了对水的交叉敏感性,而且增强了溶剂蒸气的传感效果。为了获得更好的选择性,可以将分子杯(例如杯[n]芳烃)连接到间隔基上。在分别用硅烷和硫醇的混合物处理装置中发现了另一种提高选择性的方法。以这种方式产生了腔,在腔中掺入了分析物,因此在较低的ppm范围内被检测到。还对质量敏感设备的表面进行了修改,以检测纳米至微米范围内的分析物。在这里,用细胞进行压印过程会在聚合物表面产生图案,从而有利于这些微生物的重新包容。这些影响归因于几何效应和通过所选聚合物的适应极性和氢键进行的化学相互作用。在营养液和其他微生物方面,传感器响应证明对细菌具有高度选择性。

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