首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Specific recognition of cationic paraquat in environmental water and vegetable samples by molecularly imprinted stir-bar sorptive extraction based on monohydroxylcucurbit[7]uril-paraquat inclusion complex
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Specific recognition of cationic paraquat in environmental water and vegetable samples by molecularly imprinted stir-bar sorptive extraction based on monohydroxylcucurbit[7]uril-paraquat inclusion complex

机译:基于单羟基手淫的分子印迹搅拌棒吸附萃取在环境水和蔬菜样品中的具体识别[7]尿嘧啶包涵体

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摘要

Molecularly imprinted stir-bar coatings were created based on a hydroxylcucurbit[7]uril-paraquat inclusion complex. The inclusion complex that contained paraquat (PQ) as a template and monohydroxylcucurbit[7]uril ((OH)Q[7]) as a monomer was preassembled mainly through cavity inclusion interaction of (OH)Q[7] to form a one-dimensional self-assembly structure. The inclusion complex was anchored chemically on the surface of a glass stir bar with hydroxy-terminated poly(dimethylsiloxane) by the sol-gel technique to obtain a molecularly imprinted polymer-coated stir bar (MIP-SB). The molecularly imprinted coating showed specific adsorption for cationic PQ in aqueous media. Other quaternary amine compounds with a similar structure that coexisted in the solution, such as ethyl-viologen, diquat, and difenzoquat, were almost not extracted by the prepared MIP-SB. The sorptive capacity of the MIP-SB for PQ was nearly four times that of the non-imprinted stir bar (NIP-SB). The recognition mechanism indicated that the selectivity and extraction capacity resulted mainly from the imprinted cavity in the polymer that was formed by a one-dimensional assembly structure consisting of the (OH)Q[7]-PQ inclusion complex. The imprinted cavity was complementary to the PQ in shape, size, and functionality. A method to determine PQ in environmental water and vegetable samples was developed by combining MIP-SB sorptive extraction with HPLC-UV. The linear range was from 100 to 10,000 ng L-1 with a 8.2 ng L-1 detection limit for water samples and 0.02-0.85 mg kg(-1) with a 0.005 mg kg(-1) detection limit for vegetable samples. The limit of detection for both samples was lower than the EU-established maximum residual levels and that of other previously reported methods. The average recoveries were 70.0-96.1% with a relative standard deviation <= 7.6%, which showed the successful application in real sample analysis.
机译:基于羟基型手淫[7]尿嘧啶包合物含有分子印迹搅拌棒涂层。作为单体的含有百草枯(PQ)作为模板和单羟基((OH)Q [7])作为单体的包合物复合物主要通过(OH)Q [7]的腔包涵体相互作用,形成一个 - 尺寸自组装结构。将包含络合物用溶胶 - 凝胶技术用羟基封端的聚(二甲基硅氧烷)在玻璃搅拌棒的表面上锚固,得到分子印迹聚合物涂层搅拌棒(MIP-SB)。分子印迹涂层显示出阳离子介质中的阳离子PQ的特异性吸附。与制备的MIP-Sb的溶液中共同共存的其他季胺化合物,例如乙基 - viololgen,Diquat和Difenzoquat,如制备的MIP-Sb。 PQ的MIP-Sb的吸附容量几乎是非印记搅拌棒(NIP-SB)的四倍。识别机制表明,选择性和提取能力主要来自聚合物中的印迹腔,其由由(OH)Q [7] -PQ包含复合物组成的一维组装结构形成。印迹腔与形状,大小和功能的PQ互补。通过将MIP-Sb吸附萃取与HPLC-UV组合来开发了一种确定环境水和植物样品中PQ的方法。线性范围为100至10,000ng的L-1,水样为8.2ng L-1检测限,0.02-0.85mg kg(-1),蔬菜样品的0.005mg kg(-1)检测限。两种样品的检测极限低于Eu成立的最大残余水平,以及其他先前报道的方法。平均回收率为70.0-96.1%,相对标准偏差<= 7.6%,显示出在实际样本分析中的成功应用。

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