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Original Articles

Selective determination of thiram residues in fruit and vegetables by hydrophilic interaction LC-MS

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Pages 1909-1917 | Received 19 Apr 2013, Accepted 06 Aug 2013, Published online: 26 Sep 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Stephen W. C. Chung & Waiky W. K. Wong. (2022) Chromatographic analysis of dithiocarbamate residues and their metabolites in foods employed in dietary exposure studies—a review. Food Additives & Contaminants: Part A 39:10, pages 1731-1743.
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Yuying Song, Yuanyi Zhang, Yiqun Huang, Yuxia Fan & Keqiang Lai. (2020) Rapid Determination of Thiram Residues in Fruit Juice by surface-enhanced Raman Scattering Coupled with a Gold@Silver nanoparticle-graphene Oxide Composite. Analytical Letters 53:7, pages 1003-1018.
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Claudia Oellig & Wolfgang Schwack. (2017) Comparison of HILIC columns for residue analysis of dithiocarbamate fungicides. Journal of Liquid Chromatography & Related Technologies 40:8, pages 415-418.
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Articles from other publishers (15)

Fuxiang Wang, Zuopeng Li, Hongping Jia, Chang-qing Miao, Runhua Lu, Sanbing Zhang & Zhiqiang Zhang. (2023) Bimetallic metal–organic frameworks-based ratiometric fluorescence sensor for the quantitative detection of thiram in fruits samples. Food Chemistry 409, pages 135328.
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Huan Zhang, Pei Zeng, Qi Guan, Xianzai Yan, Lili Yu, Guoping Wu, Yanping Hong & Chunrong Wang. (2023) Combining thin-film microextraction and surface enhanced Raman spectroscopy to sensitively detect thiram based on 3D silver nanonetworks. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 287, pages 122073.
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Muhammad Asghar, Mohammad Yaqoob, Nusrat Munawar & Abdul Nabi. (2022) Determination of thiram residues in fresh water using flow injection diperiodatonickelate(IV)–quinine chemiluminescence detection. Luminescence 37:12, pages 2041-2049.
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Yanru Ding, Baoqin Hao, Nan Zhang, Haiyang Lv, Bing Zhao & Yuan Tian. (2022) Rapid determination of thiram and atrazine pesticide residues in fruit and aqueous system based on surface-enhanced Raman scattering. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, pages 121873.
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Jing Wang, Xiaobo Sun, Wei Pan & Jinping Wang. (2022) A fluorescence and phosphorescence dual-signal readout platform based on carbon dots/SiO2 for multi-channel detections of carbaryl, thiram and chlorpyrifos. Microchemical Journal 178, pages 107408.
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Nguyen Tuan Anh, Ngo Xuan Dinh, Hoang Van Tuan, Tran Hung Thuan, Le Minh Tung, Van Phan Le, Doan Quang Tri & Anh-Tuan Le. (2021) Cost-Effective Tween 80-Capped Copper Nanoparticles for Ultrasensitive Colorimetric Detection of Thiram Pesticide in Environmental Water Samples. Journal of Nanomaterials 2021, pages 1-10.
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Nisar Hussain, Hongbin Pu & Da-Wen Sun. (2021) Core size optimized silver coated gold nanoparticles for rapid screening of tricyclazole and thiram residues in pear extracts using SERS. Food Chemistry 350, pages 129025.
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Xuxin WANG, Shukun ZHOU, Xiaomin LI & Qinghe ZHANG. (2022) 高效液相色谱-二极管阵列检测法测定小麦粉及面粉改良剂中福美双. Chinese Journal of Chromatography 39:6, pages 652-658.
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Vishal Dhavle, Mehul R. Kateshiya, Tae-Jung Park & Suresh Kumar Kailasa. (2021) Functionalization of Silver Nanoparticles with Carbohydrate Derivative for Colorimetric Assay of Thiram. Journal of Electronic Materials 50:6, pages 3676-3685.
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Natércia C.T. Martins, Sara Fateixa, Tiago Fernandes, Helena I.S. Nogueira & Tito Trindade. (2021) Inkjet Printing of Ag and Polystyrene Nanoparticle Emulsions for the One-Step Fabrication of Hydrophobic Paper-Based Surface-Enhanced Raman Scattering Substrates. ACS Applied Nano Materials 4:5, pages 4484-4495.
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Saima Ameen Ghoto, Muhammad Yar Khuhawar & Taj Muhammad Jahangir. (2019) Silver Nanoparticles with Sodium Dodecyl Sulfate as a Colorimetric Probe for the Detection of Dithiocarbamate Pesticides in Environmental Samples. Analytical Sciences 35:6, pages 631-637.
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Saima Ameen Ghoto, Muhammad Yar Khuhawar, Taj Muhammad Jahangir & Jamal ul Din Mangi. (2019) Applications of copper nanoparticles for colorimetric detection of dithiocarbamate pesticides. Journal of Nanostructure in Chemistry 9:2, pages 77-93.
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Yan Zhang, Jianru Zhao, Xiaobo Sun, Wei Pan, Guifeng Yu & Jinping Wang. (2018) Fluorescent carbon dots for probing the effect of thiram on the membrane of fungal cell and its quantitative detection in aqueous solution. Sensors and Actuators B: Chemical 273, pages 1833-1842.
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Jigna R. Bhamore, Sanjay Jha, Anil Kumar Mungara, Rakesh Kumar Singhal, Dhanshri Sonkeshariya & Suresh Kumar Kailasa. (2016) One-step green synthetic approach for the preparation of multicolor emitting copper nanoclusters and their applications in chemical species sensing and bioimaging. Biosensors and Bioelectronics 80, pages 243-248.
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Jigneshkumar V. Rohit & Suresh Kumar Kailasa. (2014) Cyclen dithiocarbamate-functionalized silver nanoparticles as a probe for colorimetric sensing of thiram and paraquat pesticides via host–guest chemistry. Journal of Nanoparticle Research 16:11.
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