Key Laboratory of Colloid and Interface Chemistry & Key Laboratory of Special Aggregated Materials, Shandong University, Ministry of Education, Jinan 250100, China.
Key Laboratory of Colloid and Interface Chemistry & Key Laboratory of Special Aggregated Materials, Shandong University, Ministry of Education, Jinan 250100, China.
Biosens Bioelectron. 2015 Feb 15;64:277-84. doi: 10.1016/j.bios.2014.09.016. Epub 2014 Sep 8.
A new analytical approach for detecting diaminopyridine derivatives has been constructed using a molecular imprinting-electrochemical sensor. Opposed to the conventional strategy of employing diaminopyridine as the functional monomer and uracil derivatives as the target analyte, in the current study, the 2,6-Diaminopyridine-imprinted core-shell nanoparticles were synthesized with 2,6-Diaminopyridine as the template molecule and 6-aminouracil as the functional monomer. Graphene and ionic liquid which can assist 2,6-Diaminopyridine-imprinted core-shell nanoparticles in electrochemical reaction kinetics by increasing conductivity have been introduced to form one of the electrode modified layers. The proposed analytical method has been applied in 2,6-Diaminopyridine detection in hair-dyes and demonstrated appropriate sensitivity and selectivity, with a linear range of 0.0500-35.0 mg kg(-1) and a detection limit as low as 0.0275 mg kg(-1).
一种新的分析方法已经构建用于检测二氨基嘧啶衍生物使用分子印迹电化学传感器。相对于传统的策略,采用二氨基嘧啶作为功能单体和尿嘧啶衍生物作为目标分析物,在目前的研究中,2,6 - 二氨基嘧啶印迹核壳纳米粒子的合成与 2,6 - 二氨基嘧啶作为模板分子和 6 - 氨基尿嘧啶作为功能单体。石墨烯和离子液体可以通过增加电导率来辅助 2,6 - 二氨基嘧啶印迹核壳纳米粒子的电化学反应动力学,已被引入形成一个电极修饰层。所提出的分析方法已应用于染发剂中二氨基嘧啶的检测,并表现出适当的灵敏度和选择性,线性范围为 0.0500-35.0 mg kg(-1),检测限低至 0.0275 mg kg(-1)。