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基于电位型表面活性剂传感器对用于 COVID-19 消毒剂配方的阳离子表面活性剂原料的研究。

Study of Cationic Surfactants Raw Materials for COVID-19 Disinfecting Formulations by Potentiometric Surfactant Sensor.

机构信息

Faculty of Geotechnical Engineering, University of Zagreb, 42000 Varaždin, Croatia.

Saponia Chemical, Pharmaceutical and Foodstuff Industry, Inc., 31000 Osijek, Croatia.

出版信息

Sensors (Basel). 2023 Feb 13;23(4):2126. doi: 10.3390/s23042126.

Abstract

The behavior of a new 1,3-dioctadecyl-1-imidazol-3-ium tetraphenylborate (DODI-TPB) surfactant sensor was studied in single and complex mixtures of technical grade QACs-benzalkonium chloride (BAC), -didecyl--dimethylammonium chloride (DDAC), and -dioctyl--dimethylammonium chloride (DOAC) usually used in COVID-19 disinfecting agents formulations. The results obtained with the new DODI-TPB sensor were in good agreement with data measured by a 1,3-dihexadecyl-1-benzo[]imidazol-3-ium-tetraphenylborate (DMI-TPB) surfactant sensor, as well as two-phase titration used as a reference method. The quantitative titrations of a two-component mixture of the cationic homologs (a) DDAC and DOAC; and (b) BAC and DOAC showed that the new DODI-TPB surfactant sensor can clearly distinguish two separate mixture components in a single potentiometric titration curve with two characteristic inflexion points. The consumption of SDS (used as a titrant) in the end-point 1 (EP 1) corresponded to the content of DDAC (or BAC), whereas the consumption in the end-point 2 (EP 2) corresponded to the total content of both cationic surfactants in the mixture. DOAC content in both mixtures can be calculated from the difference of the titrant used to achieve EP1 and EP2. The addition of nonionic surfactants resulted in the signal change decrease from 333.2 mV (1:0; no nonionic surfactant added) to 243.0 mV (1:10, /). The sensor was successfully tested in ten two-component COVID-19 disinfecting formulations.

摘要

研究了一种新型的 1,3-二辛基-1-咪唑-3-翁四苯硼酸盐(DODI-TPB)表面活性剂传感器在技术级 QACs-苯扎氯铵(BAC)、-二癸基-二甲铵氯(DDAC)和 -二辛基-二甲铵氯(DOAC)的单一和复杂混合物中的行为,这些物质通常用于 COVID-19 消毒剂配方中。用新型 DODI-TPB 传感器获得的结果与用 1,3-二己基-1-苯并[]咪唑-3-翁四苯硼酸盐(DMI-TPB)表面活性剂传感器以及作为参考方法的两相滴定法测量的数据吻合良好。两种阳离子同系物(a)DDAC 和 DOAC;和(b)BAC 和 DOAC 的二组分混合物的定量滴定表明,新型 DODI-TPB 表面活性剂传感器可以在单个电位滴定曲线中清楚地区分两个单独的混合物成分,该曲线具有两个特征拐点。在终点 1(EP1)处 SDS(用作滴定剂)的消耗与 DDAC(或 BAC)的含量相对应,而在终点 2(EP2)处的消耗与混合物中两种阳离子表面活性剂的总量相对应。可以从达到 EP1 和 EP2 所用滴定剂的差异计算出两种混合物中 DOAC 的含量。非离子表面活性剂的加入导致信号变化从 333.2 mV(1:0;未添加非离子表面活性剂)减少到 243.0 mV(1:10,/)。该传感器已成功用于十种 COVID-19 消毒剂的两种成分配方的测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2f9/9964672/70308036ca1d/sensors-23-02126-g001.jpg

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