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Polmers for the selective detection of humitity

机译:用于选择性检测湿度的聚合物

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The air quality in the domestic area, workshops or industrial work places is of great interest, especially in respect to humidity and vapros. The simplest way to determine humidity is by resistive measurements using interdigitial transducers (IDT). Combining these devices with polyelectrolytes, changes in conductivity due to variations of humidity can be monitored. A centralized surveillance of differnet control points can be accomplished by wirelessly, interrogative SAWs. A problem in measuring humidity by IDTs arises since cross sensitivities to solvent vapors are observed due to ion solvation effects. By varying the counterions from Li~+ to Cs~+ orgnaic vapors are no longer able to compete with the hydration and selective moisture detection is achieved. Water insoluble sensor coatings which ensure long-term stability and resistance against flooding were synthesized by on-chip cross-linking on the surface of the applied microelectronic IDTs. Thus, a cross-linked Cs~+ polyelectrolyte was designed as a selective sensor coating for humidity monitoring. One port wirelessly, interrogative SAW-devices have one tranducer connected to an antenna and reflectors for identification (ID-tag). The interrogator transmits a burst signal and the sensor responds with a burst of signals depending on the number of relfectors. The ID-tags used have two reflectors which are approxiamtley 4 and 15 mm away from the transducer which respond in bursts at 3 and 9 mus. On coating the area between the two reflectors with more hydrophilic or hydrophobic materials humdiity or solvent vapros can be determined via the reflected amplitudes.
机译:人们非常关注家庭,车间或工业工作场所的空气质量,特别是在湿度和vapros方面。确定湿度的最简单方法是使用手指间换能器(IDT)进行电阻测量。将这些设备与聚电解质结合在一起,可以监测由于湿度变化引起的电导率变化。可以通过无线,询问性SAW来实现对不同网控制点的集中监视。由于通过离子溶剂化作用观察到对溶剂蒸气的交叉敏感性,因此出现了通过IDT测量湿度的问题。通过将抗衡离子从Li〜+改变为Cs〜+,有机蒸汽不再能够与水合竞争,从而实现了选择性的水分检测。通过在所施加的微电子IDT表面上进行片上交联,合成了可确保长期稳定性和抗潮性的水不溶性传感器涂层。因此,将交联的Cs +聚合电解质设计为用于湿度监测的选择性传感器涂层。通过无线方式的一个端口,询问声表面波设备具有一个与天线相连的传感器和用于标识(ID标签)的反射器。询问器发送一个突发信号,并且传感器根据反射器的数量以突发信号进行响应。所使用的ID标签有两个反射器,它们与换能器分别相距约4和15 mm,它们分别以3和9 m​​us的脉冲响应。在两个反射器之间涂覆更多亲水性或疏水性材料时,可以通过反射幅度确定湿度或溶剂挥发度。

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