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Sensitivity and Thermal Property of Polyaniline Sensor

机译:聚苯胺传感器的灵敏度和热性能

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The polyaniline (PAn) polymer was synthesized by a chemical method using aniline (AN) as monomer, ammonium persulfate (APS) as initiator, and dodecylbenzene sulfonic acid (DBSA) as dopant at 0℃. Conducting polymer films were prepared on the alumina substrate with an interdigitated electrode by using the dip coating method. These films were soaked in methanol solvent for 1h at room temperature to remove excessive DBSA and then were heated at 70℃ for 4h in N_2. The detecting materials having a liquid phase at one atmospheric were precisely controlled by the system having a mass flow controller (MFC), temperature controller and measuring chamber. The sensitivity was estimated by heating from 70℃. The sensitivity observed in PAn sensor was lower than PAn-DBSA sensor at 1000 ppm methanol vapors under N_2. because the additional thermal doping effect was resulted from increasing molecular motion in polymer chain to 70℃ but DBSA used as dopant was decomposed by heating over 120℃. It caused the melting point of DBSA to be lower than 120℃. So the thermal properties of PAn and PAn-DBSA were investigated by DSC (differential scanning calorimetry). The DSC was scanned with a heating rate of 10℃/min. The PAn sample did not show the melting peak but PAn-DBSA sample showed the melting peak at 190℃. From this result, the new crystalline-region was evaluated in PAn-DBSA and increased of crystallinity of PAn polymer. And FE-SEM studies showed that the presence of the dopant strongly influenced the morphology of the polymer.
机译:在0℃下,以苯胺(AN)为单体,过硫酸铵(APS)为引发剂,十二烷基苯磺酸(DBSA)为掺杂剂,通过化学方法合成了聚苯胺(PAn)聚合物。使用浸涂法在具有叉指电极的氧化铝基板上制备导电聚合物膜。将这些膜在室温下在甲醇溶剂中浸泡1h,以去除过量的DBSA,然后在70℃的N_2中加热4h。具有质量流量控制器(MFC),温度控制器和测量室的系统可精确控制在一个大气压下具有液相的检测材料。灵敏度是从70℃开始加热估算的。在N_2下,在1000 ppm甲醇蒸气下,PAn传感器中观察到的灵敏度低于PAn-DBSA传感器。因为额外的热掺杂效应是由于聚合物链中的分子运动增加到70℃而引起的,但是DBSA用作掺杂剂则在120℃以上加热时会分解。这导致DBSA的熔点低于120℃。因此用DSC(差示扫描量热法)研究了PAn和PAn-DBSA的热性能。以10℃/ min的加热速率扫描DSC。 PAn样品未出现熔融峰,而PAn-DBSA样品在190℃出现熔融峰。根据该结果,在PAn-DBSA中评估了新的结晶区域,并提高了PAn聚合物的结晶度。 FE-SEM研究表明,掺杂剂的存在强烈影响了聚合物的形态。

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