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Sol-gel organic-inorganic hybrid polydimethysiloxane-3- aminopropyltrimethoxysilane as sorbent for stir bar sorpitive extraction of organophosphorus pesticides

机译:溶胶-凝胶有机-无机杂化聚二甲基硅氧烷-3-氨基丙基三甲氧基硅烷作为搅拌棒吸附萃取有机磷农药的吸附剂

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摘要

An organic-inorganic hybrid 3-aminopropyltrimethoxysilane (APTMS)- polydimethylsiloxane (PDMS) was produced using sol-gel method and used as coating on glass encased stir bar. The physico-chemical properties and extraction ability of the APTMS/PDMS hybrid coatings were manipulated by varying the molar ratio of APTMS to PDMS, amount of water and types of catalysts during sol synthesis. Fourier Transform Infrared Spectroscopy results showed successful hybridization between PDMS and amino moiety. Field Emission Scanning Electron Microscopy showed a homogenous surface image of the APTMS/PDMS hybrid coating while nitrogen adsorption indicated that the hybrid is a mesoporous material (pore size ~2.9 nm). The ability of the APTMS/PDMS hybrid coatings were investigated for stir bar sorptive extraction (SBSE) of two selected organophosphorus pesticides (OPPs) namely polar dicrotophos and mid-polar malathion. Analysis was performed using HPLC with UV detector. Optimized SBSE parameters using APTMS/PDMS hybrid coating were 300 rpm stirring rate, 15 min extraction time, 1 mL methanol as ultrasonic assisted liquid desorption (UA-LD) solvent and 25 min desorption time. The optimized SBSE parameters using PDMS-coated TWISTER were also similar with the APTMS/PDMS hybrid coating except that the stirring rate used was 600 rpm. The limit of detection (LOD) (S/N=3) of dicrotophos is 0.108 mg L-1 and 0.158 mg L-1 for malathion using APTMS/PDMS hybrid coating. LOD (S/N=3) of malathion is 0.31 mg L-1 but dicrotophos was not detected with the PDMS-coated TWISTER. The APTMS/PDMS sol-gel coating developed for SBSE was successfully applied for the determination of OPPs in grape and cucumber samples, and its performance was compared with commercial PDMS TWISTER. The recoveries of dicrotophos and malathion from cucumber and grape samples using APTMS/PDMS hybrid coating was 71% and 98%, respectively with RSD 3.1%-3.6%. The recoveries of malathion in cucumber and grape using PDMS-coated TWISTER was 91% and 62% respectively, with acceptable RSD 7.46%. SBSE using APTMS/PDMS hybrid coating showed better selectivity for the polar dicrotophos compared to commercial PDMS-coated TWISTER, which failed to extract the polar dicrotophos.
机译:使用溶胶-凝胶法制得有机-无机杂化的3-氨基丙基三甲氧基硅烷(APTMS)-聚二甲基硅氧烷(PDMS),并将其用作玻璃包裹的搅拌棒上的涂层。通过改变溶胶合成过程中APTMS与PDMS的摩尔比,水量和催化剂类型,可以控制APTMS / PDMS杂化涂层的理化性质和提取能力。傅里叶变换红外光谱结果表明,PDMS与氨基部分成功杂交。场发射扫描电子显微镜显示了APTMS / PDMS杂化涂层的均匀表面图像,而氮吸附表明杂化是介孔材料(孔径约2.9 nm)。研究了APTMS / PDMS杂化涂料对两种选定的有机磷农药(OPP)(即极地久效磷和中极马拉硫磷)的搅拌棒吸附萃取(SBSE)的能力。使用具有UV检测器的HPLC进行分析。使用APTMS / PDMS杂化涂层优化的SBSE参数为300 rpm搅拌速度,15分钟提取时间,1 mL作为超声辅助液体解吸(UA-LD)溶剂的甲醇和25分钟解吸时间。使用PDMS涂层的TWISTER的优化SBSE参数也与APTMS / PDMS混合涂层相似,不同之处在于所用的搅拌速度为600 rpm。使用APTMS / PDMS杂合涂层检测的久效磷的检出限(LOD)(S / N = 3)为马拉硫磷0.108 mg L-1和0.158 mg L-1。马拉硫磷的LOD(S / N = 3)为0.31 mg L-1,但用PDMS涂层的TWISTER未检测到久效磷。为SBSE开发的APTMS / PDMS溶胶-凝胶涂料已成功应用于葡萄和黄瓜样品中OPP的测定,并将其性能与商用PDMS TWISTER进行了比较。使用APTMS / PDMS混合包衣从黄瓜和葡萄样品中回收的久效磷和马拉硫磷分别为71%和98%,相对标准偏差为3.1%-3.6%。使用PDMS涂层的TWISTER在黄瓜和葡萄中的马拉硫磷回收率分别为91%和62%,相对标准偏差为7.46%。与商业PDMS涂层的TWISTER相比,使用APTMS / PDMS杂化涂层的SBSE对极性久效磷表现出更好的选择性,后者无法提取极性久效磷。

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    Hasnan Zafran;

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  • 年度 2012
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