Detection of flonicamid insecticide in vegetable samples by UV–Visible spectrophotometer and FTIR

In the present study, the synthesis of 4,4′-((4-dimethylamino)cyclohexane-2,5-vinylidene)methylene))bis-(N, N-dimethylaniline) violet color dye by the hydrolyzed of Flonicamid in basic medium (OH−) followed by bromination and leucocrystal violet, as well as the synthesis of violet crystal by environ...

Full description

Bibliographic Details
Main Authors: Deepak Kumar Sahu, Joyce Rai, Manish K. Rai, Manoj Kumar Banjare, Mamta Nirmal, Kalpana Wani, Reshma Sahu, Shraddha G. Pandey, Prashant Mundeja
Format: Article
Language:English
Published: Elsevier 2020-01-01
Series:Results in Chemistry
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2211715620300370
_version_ 1818379870031314944
author Deepak Kumar Sahu
Joyce Rai
Manish K. Rai
Manoj Kumar Banjare
Mamta Nirmal
Kalpana Wani
Reshma Sahu
Shraddha G. Pandey
Prashant Mundeja
author_facet Deepak Kumar Sahu
Joyce Rai
Manish K. Rai
Manoj Kumar Banjare
Mamta Nirmal
Kalpana Wani
Reshma Sahu
Shraddha G. Pandey
Prashant Mundeja
author_sort Deepak Kumar Sahu
collection DOAJ
description In the present study, the synthesis of 4,4′-((4-dimethylamino)cyclohexane-2,5-vinylidene)methylene))bis-(N, N-dimethylaniline) violet color dye by the hydrolyzed of Flonicamid in basic medium (OH−) followed by bromination and leucocrystal violet, as well as the synthesis of violet crystal by environmental samples (i.e., cucumber, tomato, bottle gourd, soil, and water). Characterization for the synthesis of violet crystal dye by using UV–Vis spectrophotometer and FTIR methods. As a result, the UV–Vis absorption spectrum was observed at 580 nm. The limit of detection and limit of quantification was observed at 0.007 μg mL−1 and 0.025 μg mL−1 respectively. We have also conformational studied the functional group (such as an NH symmetric band are 1654.85 cm−1, symmetrical stretching CN is 1417.46 cm−1, NH and CN band 1321.34 cm−1, CC stretching is 1035.81 cm−1, a carbonyl group is 785.61 cm−1) involved in the complexation between flonicamid and bromination by FTIR method. This system has been successfully applied for the detection of flonicamid in various environmental sample i.e., cucumber, tomato, bottle gourd, soil, and water. This method advances in simple, selective, and rapid as well as economic for the determination of flonicamid insecticide in vegetable and fruit samples.
first_indexed 2024-12-14T02:09:39Z
format Article
id doaj.art-f1f8ff0922574f3f8ec0d6f162bf5ba5
institution Directory Open Access Journal
issn 2211-7156
language English
last_indexed 2024-12-14T02:09:39Z
publishDate 2020-01-01
publisher Elsevier
record_format Article
series Results in Chemistry
spelling doaj.art-f1f8ff0922574f3f8ec0d6f162bf5ba52022-12-21T23:20:47ZengElsevierResults in Chemistry2211-71562020-01-012100059Detection of flonicamid insecticide in vegetable samples by UV–Visible spectrophotometer and FTIRDeepak Kumar Sahu0Joyce Rai1Manish K. Rai2Manoj Kumar Banjare3Mamta Nirmal4Kalpana Wani5Reshma Sahu6Shraddha G. Pandey7Prashant Mundeja8School of Studies in Chemistry, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh 492010, India; Chhattisgarh Council of Science and Technology, Raipur, Chhattisgarh 492014, IndiaChhattisgarh Council of Science and Technology, Raipur, Chhattisgarh 492014, IndiaSchool of Studies in Chemistry, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh 492010, India; Corresponding author.School of Studies in Chemistry, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh 492010, India; MATS School of Sciences, MATS University, Pagaria Complex, Pandri, Raipur, C.G. 492009, IndiaSchool of Studies in Chemistry, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh 492010, IndiaSchool of Studies in Chemistry, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh 492010, IndiaSchool of Studies in Chemistry, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh 492010, IndiaSchool of Studies in Chemistry, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh 492010, IndiaSchool of Studies in Chemistry, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh 492010, IndiaIn the present study, the synthesis of 4,4′-((4-dimethylamino)cyclohexane-2,5-vinylidene)methylene))bis-(N, N-dimethylaniline) violet color dye by the hydrolyzed of Flonicamid in basic medium (OH−) followed by bromination and leucocrystal violet, as well as the synthesis of violet crystal by environmental samples (i.e., cucumber, tomato, bottle gourd, soil, and water). Characterization for the synthesis of violet crystal dye by using UV–Vis spectrophotometer and FTIR methods. As a result, the UV–Vis absorption spectrum was observed at 580 nm. The limit of detection and limit of quantification was observed at 0.007 μg mL−1 and 0.025 μg mL−1 respectively. We have also conformational studied the functional group (such as an NH symmetric band are 1654.85 cm−1, symmetrical stretching CN is 1417.46 cm−1, NH and CN band 1321.34 cm−1, CC stretching is 1035.81 cm−1, a carbonyl group is 785.61 cm−1) involved in the complexation between flonicamid and bromination by FTIR method. This system has been successfully applied for the detection of flonicamid in various environmental sample i.e., cucumber, tomato, bottle gourd, soil, and water. This method advances in simple, selective, and rapid as well as economic for the determination of flonicamid insecticide in vegetable and fruit samples.http://www.sciencedirect.com/science/article/pii/S2211715620300370PesticidesFlonicamidInsecticideVegetablesUV–Vis spectrophotometerFTIR
spellingShingle Deepak Kumar Sahu
Joyce Rai
Manish K. Rai
Manoj Kumar Banjare
Mamta Nirmal
Kalpana Wani
Reshma Sahu
Shraddha G. Pandey
Prashant Mundeja
Detection of flonicamid insecticide in vegetable samples by UV–Visible spectrophotometer and FTIR
Results in Chemistry
Pesticides
Flonicamid
Insecticide
Vegetables
UV–Vis spectrophotometer
FTIR
title Detection of flonicamid insecticide in vegetable samples by UV–Visible spectrophotometer and FTIR
title_full Detection of flonicamid insecticide in vegetable samples by UV–Visible spectrophotometer and FTIR
title_fullStr Detection of flonicamid insecticide in vegetable samples by UV–Visible spectrophotometer and FTIR
title_full_unstemmed Detection of flonicamid insecticide in vegetable samples by UV–Visible spectrophotometer and FTIR
title_short Detection of flonicamid insecticide in vegetable samples by UV–Visible spectrophotometer and FTIR
title_sort detection of flonicamid insecticide in vegetable samples by uv visible spectrophotometer and ftir
topic Pesticides
Flonicamid
Insecticide
Vegetables
UV–Vis spectrophotometer
FTIR
url http://www.sciencedirect.com/science/article/pii/S2211715620300370
work_keys_str_mv AT deepakkumarsahu detectionofflonicamidinsecticideinvegetablesamplesbyuvvisiblespectrophotometerandftir
AT joycerai detectionofflonicamidinsecticideinvegetablesamplesbyuvvisiblespectrophotometerandftir
AT manishkrai detectionofflonicamidinsecticideinvegetablesamplesbyuvvisiblespectrophotometerandftir
AT manojkumarbanjare detectionofflonicamidinsecticideinvegetablesamplesbyuvvisiblespectrophotometerandftir
AT mamtanirmal detectionofflonicamidinsecticideinvegetablesamplesbyuvvisiblespectrophotometerandftir
AT kalpanawani detectionofflonicamidinsecticideinvegetablesamplesbyuvvisiblespectrophotometerandftir
AT reshmasahu detectionofflonicamidinsecticideinvegetablesamplesbyuvvisiblespectrophotometerandftir
AT shraddhagpandey detectionofflonicamidinsecticideinvegetablesamplesbyuvvisiblespectrophotometerandftir
AT prashantmundeja detectionofflonicamidinsecticideinvegetablesamplesbyuvvisiblespectrophotometerandftir