Department of Chemistry, Isfahan University of Technology, Isfahan, 84156-83111, Iran.
Mikrochim Acta. 2021 Jan 2;188(1):4. doi: 10.1007/s00604-020-04685-x.
A novel covalent triazine-based framework (CTF)-grafted phenyl-functionalized fibrous silica nanosphere, KCC-1 (named as RS-2) was synthesized via a simple and effective Friedel-Crafts approach. The microporous CTF with fluorene backbone was coupled and grown uniformly on the surface of phenyl-functionalized KCC-1 to prepare a hybrid extended porous framework. The prepared materials were characterized, and FE-SEM and TEM images revealed a flower-like structure for RS-2. The synthesized RS-2 showed excellent thermal stability, so the weight loss was about 30% at 800 °C. RS-2 was applied as a new coating in the solid-phase microextraction procedure to extract chlorpyrifos and fenthion pesticides from water, wastewater, and fruit samples, before determining by corona discharge-ion mobility spectrometry. Some experimental factors affecting the extraction yield of the analytes, including ionic strength, stirring rate, sample pH, extraction temperature, and extraction time, were investigated. Under optimum conditions, the linear dynamic ranges were 0.1-10 μg L and 1.0-70 μg L, and the limits of detection were 0.05 and 0.55 μg L for chlorpyrifos and fenthion, respectively. The proposed method showed recovery values in the range 86-117% with a precision of 3.0-7.1% for real samples. Covalent triazine-based framework (CTF)-grafted phenyl-functionalized fibrous silica nanosphere (named as RS-2) was synthesized. RS-2 was applied as a sorbent for solid-phase microextraction (SPME) of chlorpyrifos and fenthion from fruit and water samples followed by corona discharge ionization ion mobility spectrometry (CD-IMS).
一种新型共价三嗪基骨架(CTF)接枝苯功能化纤维状硅纳米球,KCC-1(命名为 RS-2),通过简单有效的傅克反应方法合成。带有芴骨架的微孔 CTF 均匀地偶联和生长在苯功能化 KCC-1 表面上,制备了一种混合扩展多孔骨架。对制备的材料进行了表征,FE-SEM 和 TEM 图像显示 RS-2 为花状结构。合成的 RS-2 表现出优异的热稳定性,因此在 800°C 时的重量损失约为 30%。RS-2 被用作固相微萃取程序中的新涂层,用于从水、废水和水果样品中提取毒死蜱和倍硫磷农药,然后用电晕放电离子迁移谱法进行测定。研究了影响分析物萃取产率的一些实验因素,包括离子强度、搅拌速度、样品 pH 值、萃取温度和萃取时间。在最佳条件下,线性动态范围分别为 0.1-10μg/L 和 1.0-70μg/L,对毒死蜱和倍硫磷的检出限分别为 0.05 和 0.55μg/L。该方法对实际样品的回收率在 86-117%范围内,精密度为 3.0-7.1%。合成了共价三嗪基骨架(CTF)接枝苯功能化纤维状硅纳米球(命名为 RS-2)。RS-2 被用作固相微萃取(SPME)的吸附剂,用于从水果和水样中萃取毒死蜱和倍硫磷,然后用电晕放电离子迁移谱(CD-IMS)进行测定。