用压电传感器测定液体中防腐剂

Q4 Chemistry
H. Vu, A. Zyablov
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引用次数: 0

摘要

在目前的研究中,基于山梨酸钾和苯甲酸钠印迹的分子印迹聚酰亚胺获得了压电传感器。采用聚酰亚胺和非共价印迹技术合成了分子印迹聚合物(MIPs)。结果表明,在热化学阶段,模板浓度为0.1 g/mL时,膜表面形成的分子印迹数量最多。扫描力显微镜发现,参考聚合物薄膜表面均匀,高度差在1.4 ~ 2.6 nm之间,其中88.94%的孔隙半径可达10 nm,具有良好的膜厚再现性。山梨酸钾和苯甲酸钠分子印迹聚合物的膜表面形貌更为发达,这与印迹形成的特殊性有关。本文计算了传感器的印迹因子(IF)和选择性系数(k)。分子印迹聚合物比参比聚合物(非印迹聚合物)具有更好的选择性、灵敏度和识别靶模板分子的能力。分子印迹聚合物修饰压电传感器(MIP)已被用于分析非酒精饮料中的山梨酸钾和苯甲酸钠。山梨酸钾和苯甲酸钠的检出限分别为1.6 mg/L和2 mg/L,线性范围为5 ~ 500 mg/L。采用MIP传感器和分光光度法测定非酒精饮料中的山梨酸钾和苯甲酸钠。传感器测定结果与分光光度法测定结果吻合较好。非酒精饮料中山梨酸钾和苯甲酸钠的防腐剂浓度分别为130 ~ 176 mg/L和129 ~ 146 mg/L。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of preservatives in liquids by piezosensors
In the current study, piezosensors based on the molecularly imprinted polyimides with imprints of potassium sorbate and sodium benzoate were obtained. Molecularly Imprinted Polymers (MIPs) were synthesized using a polyimide and a non-covalent imprinting technique. It was established that the use of 0.1 g/mL template concentration at the thermochemical stage led to the formation of the maximum number of molecular imprints on the film surface. Using the scanning force microscopy, it was found that the reference polymer film had a uniform surface with a small height difference from 1.4 to 2.6 nm (including 88.94 % of pores with a radius of up to 10 nm) and had good film thickness reproducibility. The surface morphology of films of molecularly imprinted polymers with imprints of potassium sorbate and sodium benzoate had more developed surface, which was associated with the peculiarities of the formation of imprints. In this work, imprinting factor (IF) and selectivity coefficient (k) of the sensor were calculated. Molecularly imprinted polymers had better selectivity, sensitivity, and ability to recognize target template molecules than the reference polymers (non-imprinted polymers). Molecularly imprinted polymer-modified piezoelectric sensors (MIP sensors) have been used to analyze potassium sorbate and sodium benzoate in non-alcoholic drinks. The linear concentration range was identified to be 5 - 500 mg/L and the limit of detection for potassium sorbate and sodium benzoate were 1.6 mg/L and 2 mg/L, respectively. The determination of potassium sorbate and sodium benzoate in non-alcoholic drinks was carried out by MIP sensors and spectrophotometry method. The results obtained by the sensors and the spectrophotometry method were in good agreement. The concentration of preservatives for the potassium sorbate and the sodium benzoate in non-alcoholic drinks was 130 - 176 mg/L and 129 - 146 mg/L, respectively.
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来源期刊
Analitika i Kontrol
Analitika i Kontrol Chemistry-Analytical Chemistry
CiteScore
0.90
自引率
0.00%
发文量
15
期刊介绍: Analitika i Kontrol is a scientific journal covering theoretical and applied aspects of analytical chemistry and analytical control, published since autumn 1997. Founder and publisher of the journal is the Ural Federal University named after the first President of Russia Boris Yeltsin (UrFU, Ekaterinburg).
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