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基于功能化碳纳米材料的新传感器用于盐酸异丙嗪测定的研究进展。

Development of the New Sensor Based on Functionalized Carbon Nanomaterials for Promethazine Hydrochloride Determination.

机构信息

Department of Chemistry, Josip Juraj Strossmayer University of Osijek, Cara Hadrijana 8/A, 31000 Osijek, Croatia.

Doctoral School of Chemistry, University of Pécs, Ifjúság útja, 7624 Pécs, Hungary.

出版信息

Sensors (Basel). 2023 Feb 27;23(5):2641. doi: 10.3390/s23052641.

Abstract

Promethazine hydrochloride (PM) is a widely used drug so its determination is important. Solid-contact potentiometric sensors could be an appropriate solution for that purpose due to their analytical properties. The aim of this research was to develop solid-contact sensor for potentiometric determination of PM. It had a liquid membrane containing hybrid sensing material based on functionalized carbon nanomaterials and PM ions. The membrane composition for the new PM sensor was optimized by varying different membrane plasticizers and the content of the sensing material. The plasticizer was selected based on calculations of Hansen solubility parameters (HSP) and experimental data. The best analytical performances were obtained using a sensor with 2-nitrophenyl phenyl ether (NPPE) as the plasticizer and 4% of the sensing material. It had a Nernstian slope (59.4 mV/decade of activity), a wide working range (6.2 × 10 M-5.0 × 10 M), a low limit of detection (1.5 × 10 M), fast response time (6 s), low signal drift (-1.2 mV/h), and good selectivity. The working pH range of the sensor was between 2 and 7. The new PM sensor was successfully used for accurate PM determination in a pure aqueous PM solution and pharmaceutical products. For that purpose, the Gran method and potentiometric titration were used.

摘要

盐酸苯海拉明(PM)是一种广泛使用的药物,因此其测定非常重要。由于具有分析性能,因此可以使用固态接触电位传感器来实现这一目标。本研究的目的是开发用于 PM 电位测定的固态接触传感器。它具有包含基于功能化碳纳米材料和 PM 离子的混合传感材料的液体膜。通过改变不同的膜增塑剂和传感材料的含量来优化新的 PM 传感器的膜组成。基于 Hansen 溶解度参数(HSP)的计算和实验数据选择了增塑剂。使用以 2-硝基苯乙醚(NPPE)为增塑剂和 4%的传感材料的传感器可获得最佳的分析性能。它具有 Nernstian 斜率(59.4 mV/decade of activity),宽工作范围(6.2×10 M-5.0×10 M),低检测限(1.5×10 M),快速响应时间(6 s),低信号漂移(-1.2 mV/h)和良好的选择性。传感器的工作 pH 范围为 2 至 7。该新型 PM 传感器成功地用于纯水溶液和药物产品中 PM 的准确测定。为此,使用了 Gran 法和电位滴定法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1565/10007115/f32d99092be1/sensors-23-02641-g001.jpg

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