Filik Hayati, Hayvali Mustafa, Kiliç Emine, Apak Reşat, Aksu Duygu, Yanaz Zeynep, Cengel Tayfun
Istanbul University, Faculty of Engineering, Department of Chemistry, Avcilar, 34320 Istanbul, Turkey.
Talanta. 2008 Oct 19;77(1):103-9. doi: 10.1016/j.talanta.2008.05.045. Epub 2008 Jun 5.
2,2'-(1,4-Phenylenedivinylene)bis-8-hydroxyquinoline (PBHQ), a highly sensitive reagent used for the colorimetric determination of p-aminophenol (PAP), was successfully immobilised on XAD-7 and coupled with optical fibres to investigate a sensor-based approach for determining p-aminophenol. The solid-state sensor is based on the reaction of PAP with PBHQ in presence of an oxidant to produce an indophenol dye. The reflectance measurements were carried out at a wavelength of 647 nm since it yielded the largest divergence different in reflectance spectra before and after reaction with the analyte. The linear dynamic range of PAP was found within the concentration range of 0.1-2.18 mg l(-1) with its LOD of 0.02 mg l(-1). The sensor response from different probes (n=7) gave a R.S.D. of 4.4% at 1.09 mg l(-1) PAP concentration. The response time of the optical one-shot sensor was 5 min for a stable solution. As this PAP sensor is irreversible, a fresh sensor has to be used for each measurement. All the experimental parameters were optimized for the determination of PAP. Using the optical sensing probe, PAP in pharmaceutical wastewater and paracetamol was determined. The effect of potential interferences such as inorganic and organic compounds was also evaluated. Potential on-site determination of PAP with such sensors can indirectly aid detection of organo-phosphorus nerve agents and pesticides in the field by inhibition of acetylcholine esterase-catalyzed hydrolysis of p-aminophenyl acetate to p-aminophenol.
2,2'-(1,4-亚苯基二亚乙烯基)双-8-羟基喹啉(PBHQ)是一种用于比色测定对氨基酚(PAP)的高灵敏度试剂,已成功固定在XAD-7上并与光纤耦合,以研究基于传感器的对氨基酚测定方法。固态传感器基于PAP与PBHQ在氧化剂存在下反应生成吲哚酚染料。由于在与分析物反应前后的反射光谱中,该波长下的反射率差异最大,因此在647 nm波长处进行反射率测量。发现PAP的线性动态范围在0.1 - 2.18 mg l(-1)浓度范围内,其检测限为0.02 mg l(-1)。在1.09 mg l(-1)的PAP浓度下,来自不同探头(n = 7)的传感器响应的相对标准偏差为4.4%。对于稳定溶液,光学一次性传感器的响应时间为5分钟。由于该PAP传感器是不可逆的,每次测量都必须使用新的传感器。对所有实验参数进行了优化以用于PAP的测定。使用光学传感探头测定了制药废水中的PAP和对乙酰氨基酚。还评估了无机和有机化合物等潜在干扰物的影响。通过抑制乙酰胆碱酯酶催化的对氨基苯乙酸水解为对氨基酚,使用此类传感器现场潜在测定PAP可间接有助于在现场检测有机磷神经毒剂和农药。