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FeO@氮掺杂碳核-双壳纳米管作为一种新型高效的纳米吸附剂,用于超声辅助分散磁固相萃取环境土壤和水样中的杂环类农药。

FeO@nitrogen-doped carbon core-double shell nanotubes as a novel and efficient nanosorbent for ultrasonic assisted dispersive magnetic solid phase extraction of heterocyclic pesticides from environmental soil and water samples.

作者信息

Aladaghlo Zolfaghar, Sahragard Ali, Fakhari Alireza, Salarinejad Neda, Movahed Siyavash Kazemi, Dabiri Minoo

机构信息

Department of Soil Science, College of Agriculture and Natural Resources, University of Tehran, Karaj, 31587-77871, Iran.

FI-TRACE Group, Department of Chemistry, Faculty of Science, University of the Balearic Islands, Carretera de Valldemossa km 7.5, E-07122, Palma de Mallorca, Illes Balears, Spain.

出版信息

Mikrochim Acta. 2024 Jan 16;191(2):98. doi: 10.1007/s00604-023-06153-8.

Abstract

FeO@nitrogen-doped carbon core-double shell nanotubes (FeO@N-C C-DSNTs) were successfully synthesized and applied as a novel nanosorbent in ultrasonic assisted dispersive magnetic solid phase extraction (UA-DMSPE) of tribenuron-methyl, fenpyroximate, and iprodione. Subsequently, corona discharge ion mobility spectrometry (CD-IMS) was employed for the detection of the extracted analytes. Effective parameters on the extraction recovery percentage (ER%) were systematically investigated and optimized. Under optimal conditions, UA-DMSPE-CD-IMS demonstrated remarkable linearity in different ranges within 1.0 - 700 ng mL with correlation coefficients exceeding 0.993, repeatability values below 6.9%, limits of detection ranging from 0.30 to 0.90 ng mL, high preconcentration factors (418 - 435), and ER% values (83 - 87%). The potential of the proposed method was further demonstrated by effectively determining the targeted pesticides in various environmental soil and water samples, exhibiting relative recoveries in the range 92.1 - 102%.

摘要

成功合成了氧化亚铁@氮掺杂碳核-双壳纳米管(FeO@N-C核-双壳纳米管,FeO@N-C C-DSNTs),并将其用作新型纳米吸附剂,用于超声辅助分散磁固相萃取(UA-DMSPE)苯磺隆、唑螨酯和异菌脲。随后,采用电晕放电离子迁移谱(CD-IMS)检测萃取的分析物。系统研究并优化了对萃取回收率(ER%)有影响的参数。在最佳条件下,UA-DMSPE-CD-IMS在1.0 - 700 ng/mL的不同范围内表现出显著的线性,相关系数超过0.993,重复性值低于6.9%,检测限为0.30至0.90 ng/mL,具有较高的预富集因子(418 - 435)和ER%值(83 - 87%)。通过有效测定各种环境土壤和水样中的目标农药,进一步证明了该方法的潜力,相对回收率在92.1 - 102%范围内。

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