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Gas sensing and biosensing applications of conducting organic polymers

机译:导电有机聚合物的气体传感和生物传感应用

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Discusses recent progress in the design of gas and odour sensors based on conducting organic polymers and the applications of these materials towards the design of new biosensors using enzymes. Polymers of a number of heterocyclic compounds display physico-chemical characteristics which cause them to behave as semiconductors. Adsorption of polar chemicals on the surfaces can cause reversible changes in DC conductivity at ambient temperatures. The author has produced arrays of twenty different sensors occupying a total area of 1 cm/sup 2/. A small microprocessor based circuit continually monitors the resistance of each sensor in the array at a rate of 20 Hz. Each sensor element changes in resistance when exposed to a polar volatile compound and though somewhat dependent on the nature of the compound and its concentration, usually about three measurement cycles of adsorption/desorption can be carried out per minute. Responses are observed within about 100 ms, and if the concentration of gas or odour is constant, the DC conductance of the polymers remains constant until the volatile is removed. Desorption times vary from 10 s to 1 min depending on the particular chemical being sensed. The data are transferred through a serial interface to an IBM-compatible computer for data processing and pattern recognition. The sensors are not poisoned by chemicals which destroy metal oxide, platinum silicon, or pthalocyanine based semiconductor gas sensors.
机译:讨论基于导电有机聚合物的气体和气味传感器设计的最新进展,以及这些材料在使用酶的新型生物传感器设计中的应用。许多杂环化合物的聚合物表现出物理化学特征,导致它们表现为半导体。极性化学物质在表面上的吸附会导致环境温度下直流电导率发生可逆变化。作者制作了二十个不同的传感器阵列,它们的总面积为1 cm / sup 2 /。一个基于微处理器的小型电路以20 Hz的速率连续监视阵列中每个传感器的电阻。当暴露于极性挥发性化合物中时,每个传感器元件的电阻都会发生变化,尽管在某种程度上取决于化合物的性质及其浓度,但通常每分钟可进行大约三个吸附/解吸测量周期。在约100毫秒内观察到响应,并且如果气体或气味的浓度恒定,则聚合物的DC电导将保持恒定,直到除去挥发物为止。解吸时间从10 s到1分钟不等,具体取决于要检测的特定化学物质。数据通过串行接口传输到IBM兼容计算机,以进行数据处理和模式识别。传感器不会受到化学物质的破坏,这些化学物质会破坏基于金属氧化物,铂硅或酞菁的半导体气体传感器。

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