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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Preparation and characterization of layer-by-layer assembly of thiols/Ag nanoparticles/polydopamine on PET bottles for the enrichment of organic pollutants from water samples
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Preparation and characterization of layer-by-layer assembly of thiols/Ag nanoparticles/polydopamine on PET bottles for the enrichment of organic pollutants from water samples

机译:巯基/ Ag纳米颗粒/聚多巴胺在PET瓶上的层层组装及其表征,用于富集水样中的有机污染物

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摘要

In this study, we immobilize thiols/Ag nanoparticles/polydopamine (thiols/AgNPs/PDOPA) sorbents onto the inner walls of 100 mL of PET bottles via layer-by-layer assembly technique. The polydopamme film, resulting from selfpolymerizing of dopamine in alkaline solution, is responsible for the farm adhesion of sorbents and reduction of Ag~+ to AgNPs. AgNPs increase the specific surface areas of the bottles and supply hydrohobic thiols ad-layers through Ag-S bonds. Organic analytes can be sorted via hydrophobic interaction with thiols on AgNPs surface and/or π-π stack interaction with DOPA film. The enrichment of organic contaminants using these bottles.can be performed by manual vibration of bottles loading with water samples for 1 min and standing for a certain time. After discarding the aqueous solution, the targets are collected with acetonitrile. In this novel kind of solid-phase extraction (SPE) method, no special instruments and electricity power are required and enrichment of organic contaminants can proceed during transport or storage of water samples, which will save the analytical time. Water samples can be stored in the bottles safely at room temperature and photocatalytic degradation, biodegradation of organic analytes are avoided due to the brown color of the bottle and antibacterial activity of AgNPs. The cost for water sample storage and loss of analytes during sample transport and storage can be decreased. The new SPE method is successfully applied to extract target analytes including two alkylphenols, two phthalate esters and six polycyclic aromatic hydrocarbons from real water samples. The recoveries of targets are ranged from 70-120%, and the detection limits are in the range of 0.1-68 ng L~(-1).
机译:在这项研究中,我们通过分层组装技术将巯基/ Ag纳米颗粒/聚多巴胺(巯基/ AgNPs / PDOPA)吸附剂固定在100 mL PET瓶的内壁上。多巴胺薄膜是由多巴胺在碱性溶液中自聚合而成的,它负责吸附剂的农场粘附作用,并降低Ag〜+对AgNP的吸附。 AgNPs增加了瓶子的比表面积,并通过Ag-S键提供了疏水的硫醇层。有机分析物可通过与AgNPs表面上的硫醇的疏水相互作用和/或与DOPA膜的π-π堆积相互作用进行分类。使用这些瓶子富集有机污染物可以通过手动振动装有水样的瓶子1分钟并静置一定时间来进行。丢弃水溶液后,用乙腈收集靶。在这种新型的固相萃取(SPE)方法中,不需要特殊的仪器和电源,并且在水样品的运输或存储过程中可以进行有机污染物的富集,这将节省分析时间。水样品可以在室温下安全地存储在瓶子中,并且可以进行光催化降解,避免了有机分析物的生物降解,因为瓶子呈棕色,并且AgNPs具有抗菌活性。可以降低水样品存储的成本以及样品运输和存储过程中分析物的损失。新的SPE方法已成功应用于从真实水样中提取目标分析物,包括两种烷基酚,两种邻苯二甲酸酯和六种多环芳烃。目标的回收率在70-120%之间,检出限在0.1-68 ng L〜(-1)范围内。

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