Phosphate ion sensor fabrication based on conductive polymer polypyrrole film coatings in doped phosphate using thick film technology

Nofriyani Nofriyani, R. V. Manurung, Aminuddin Debataraja, I. Dwisaputra
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Abstract

This study describes the development of chemical sensors to detect polypyrrole (PPy) based phosphate sensors in doped di-ammonium hydrogen phosphate (DAP) with thick film technology (TFT). Manufacturing screen-printed carbon electrode (SPCE) with thick film uses alumina substrate provided a more portable, miniature, inexpensive, and reduced use of samples and reagents. Polymer polypyrrole and di-ammonium hydrogen phosphate as sensitive membranes are electrodeposition on carbon electrodes. Characterization has been conducted to see the electrode morphology in scanning electron microscopy (SEM) test, which showed that sensitive material particles were distributed evenly on the surface of the sample and spherical. The energy dispersive spectroscopy (EDS) experiment results showed the atomic composition respectively carbon 86.95 %, nitrogen 6.94 %, oxygen 5.9 %, and phosphate 0.21 %, which were exposed to the electrode. The performance test of electrodes with a phosphate standard solution has proceeded at a concentration between 5 to 100 mg/l, which is measured using the galvanostatic method. The voltage range was from 0.252 to 0.957 V with R2 at approximately 90.265 %. The results of sensor performance were concluded that the electrode was able to detect phosphate ions.
利用厚膜技术在掺杂磷酸盐中制备基于导电聚合物聚吡咯膜的磷酸根离子传感器
本研究描述了利用厚膜技术(TFT)在掺杂磷酸氢二铵(DAP)中检测聚吡咯(PPy)基磷酸盐传感器的化学传感器的发展。采用厚膜氧化铝基材制造丝网印刷碳电极(SPCE)提供了更加便携、微型、廉价、减少样品和试剂使用的方法。在碳电极上电沉积聚合物聚吡咯和磷酸氢二铵作为敏感膜。对电极形貌进行了表征,扫描电镜(SEM)测试表明,敏感材料颗粒均匀分布在样品表面,呈球形。能谱分析(EDS)结果表明,电极表面的碳原子组成为86.95%,氮原子为6.94%,氧原子为5.9%,磷酸盐原子为0.21%。电极的性能测试在磷酸盐标准溶液中进行,浓度在5至100mg /l之间,使用恒流法测量。电压范围为0.252 ~ 0.957 V, R2约为90.265%。传感器性能的结果表明,该电极能够检测磷酸盐离子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
0.70
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10
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