Host-guest interactions of coumarin-based 1,2-pyrazole using analytical and computational methods: Paper strip-based detection, live cell imaging, logic gates and keypad lock applications

A novel Coumarin-based 1,2-pyrazole, HCPyTSC is synthesised and characterized. The chemosensor has been shown to have efficient colourimetric and fluorescence sensing capabilities for the quick and selective detection of fluoride and copper ions. At 376 and 430 nm, the HCPyTSC exhibits selective sen...

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Main Authors: Puthiyavalappil Rasin, Sabeel M. Basheer, Jebiti Haribabu, K.N. Aneesrahman, Vipin Manakkadan, Vishnunarayanan Namboothiri Vadakkedathu Palakkeezhillam, Nattamai Bhuvanesh, Cesar Echeverria, Juan F. Santibanez, Anandaram Sreekanth
Format: Article
Language:English
Published: Elsevier 2024-01-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844024001087
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author Puthiyavalappil Rasin
Sabeel M. Basheer
Jebiti Haribabu
K.N. Aneesrahman
Vipin Manakkadan
Vishnunarayanan Namboothiri Vadakkedathu Palakkeezhillam
Nattamai Bhuvanesh
Cesar Echeverria
Juan F. Santibanez
Anandaram Sreekanth
author_facet Puthiyavalappil Rasin
Sabeel M. Basheer
Jebiti Haribabu
K.N. Aneesrahman
Vipin Manakkadan
Vishnunarayanan Namboothiri Vadakkedathu Palakkeezhillam
Nattamai Bhuvanesh
Cesar Echeverria
Juan F. Santibanez
Anandaram Sreekanth
author_sort Puthiyavalappil Rasin
collection DOAJ
description A novel Coumarin-based 1,2-pyrazole, HCPyTSC is synthesised and characterized. The chemosensor has been shown to have efficient colourimetric and fluorescence sensing capabilities for the quick and selective detection of fluoride and copper ions. At 376 and 430 nm, the HCPyTSC exhibits selective sensing for Cu2+ and F− ions. By examining the natural bond orbital (NBO) analysis and the potential energy curve (PES) of the ground state for the function of the C–H bond, it has been determined from the theoretical study at hand that the deprotonation was taken from the ‘CH’ proton of the pyrazole ring. For F− and Cu2+, the HCPyTSC detection limits were 4.62 nM and 15.36 nM, respectively. Similarly, the binding constants (Kb) for F− and Cu2+ ions in acetonitrile medium were found to be 2.06 × 105 M−1 and 1.88 × 105 M−1. Chemosensor HCPyTSC with and without F− and Cu2+ ions have an emission and absorption response that can imitate a variety of logic gates, including the AND, XOR, and OR gates. Additionally, a paper-based sensor strip with the HCPyTSC was created for use in practical, flexible F− sensing applications. The paper-based sensor was more effective in detecting F− than other anions. The effectiveness of HCPyTSC for the selective detection of F− in living cells as well as its cell permeability were examined using live-cell imaging in T24 cells.
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spelling doaj.art-2ac1114b22e54b8881f9b88ed0c6d6f72024-02-01T06:34:34ZengElsevierHeliyon2405-84402024-01-01101e24077Host-guest interactions of coumarin-based 1,2-pyrazole using analytical and computational methods: Paper strip-based detection, live cell imaging, logic gates and keypad lock applicationsPuthiyavalappil Rasin0Sabeel M. Basheer1Jebiti Haribabu2K.N. Aneesrahman3Vipin Manakkadan4Vishnunarayanan Namboothiri Vadakkedathu Palakkeezhillam5Nattamai Bhuvanesh6Cesar Echeverria7Juan F. Santibanez8Anandaram Sreekanth9Department of Chemistry, National Institute of Technology-Tiruchirappalli, Tamil Nadu, 620015, IndiaDepartment of Chemistry, National Institute of Technology-Tiruchirappalli, Tamil Nadu, 620015, India; Dr. Sabeel M Basheer, Department of Chemistry, School of Advanced Sciences, VIT-AP University, 522 237, Andhra Pradesh, IndiaATACAMA-OMICS, Facultad de Medicine, Universidad de, Los Carreras 1579, 1532502, Copiapo, Chile; Chennai Institute of Technology (CIT), Chennai 600069, IndiaDepartment of Chemistry, National Institute of Technology-Tiruchirappalli, Tamil Nadu, 620015, IndiaDepartment of Chemistry, National Institute of Technology-Tiruchirappalli, Tamil Nadu, 620015, IndiaDepartment of Chemistry, National Institute of Technology-Tiruchirappalli, Tamil Nadu, 620015, IndiaDepartment of Chemistry, Texas A & M University, College Station, TX 77842, USAATACAMA-OMICS, Facultad de Medicine, Universidad de, Los Carreras 1579, 1532502, Copiapo, ChileInstitute for Medical Research, National Institute of the Republic of Serbia, University of Belgrade, Belgrade, Serbia; Integrative Center for Biology and Applied Chemistry (CIBQA), Bernardo O'Higgins University, Santiago, ChileDepartment of Chemistry, National Institute of Technology-Tiruchirappalli, Tamil Nadu, 620015, India; Corresponding author.A novel Coumarin-based 1,2-pyrazole, HCPyTSC is synthesised and characterized. The chemosensor has been shown to have efficient colourimetric and fluorescence sensing capabilities for the quick and selective detection of fluoride and copper ions. At 376 and 430 nm, the HCPyTSC exhibits selective sensing for Cu2+ and F− ions. By examining the natural bond orbital (NBO) analysis and the potential energy curve (PES) of the ground state for the function of the C–H bond, it has been determined from the theoretical study at hand that the deprotonation was taken from the ‘CH’ proton of the pyrazole ring. For F− and Cu2+, the HCPyTSC detection limits were 4.62 nM and 15.36 nM, respectively. Similarly, the binding constants (Kb) for F− and Cu2+ ions in acetonitrile medium were found to be 2.06 × 105 M−1 and 1.88 × 105 M−1. Chemosensor HCPyTSC with and without F− and Cu2+ ions have an emission and absorption response that can imitate a variety of logic gates, including the AND, XOR, and OR gates. Additionally, a paper-based sensor strip with the HCPyTSC was created for use in practical, flexible F− sensing applications. The paper-based sensor was more effective in detecting F− than other anions. The effectiveness of HCPyTSC for the selective detection of F− in living cells as well as its cell permeability were examined using live-cell imaging in T24 cells.http://www.sciencedirect.com/science/article/pii/S2405844024001087ChemosensorNBODFTLogic gatesKeypad lock
spellingShingle Puthiyavalappil Rasin
Sabeel M. Basheer
Jebiti Haribabu
K.N. Aneesrahman
Vipin Manakkadan
Vishnunarayanan Namboothiri Vadakkedathu Palakkeezhillam
Nattamai Bhuvanesh
Cesar Echeverria
Juan F. Santibanez
Anandaram Sreekanth
Host-guest interactions of coumarin-based 1,2-pyrazole using analytical and computational methods: Paper strip-based detection, live cell imaging, logic gates and keypad lock applications
Heliyon
Chemosensor
NBO
DFT
Logic gates
Keypad lock
title Host-guest interactions of coumarin-based 1,2-pyrazole using analytical and computational methods: Paper strip-based detection, live cell imaging, logic gates and keypad lock applications
title_full Host-guest interactions of coumarin-based 1,2-pyrazole using analytical and computational methods: Paper strip-based detection, live cell imaging, logic gates and keypad lock applications
title_fullStr Host-guest interactions of coumarin-based 1,2-pyrazole using analytical and computational methods: Paper strip-based detection, live cell imaging, logic gates and keypad lock applications
title_full_unstemmed Host-guest interactions of coumarin-based 1,2-pyrazole using analytical and computational methods: Paper strip-based detection, live cell imaging, logic gates and keypad lock applications
title_short Host-guest interactions of coumarin-based 1,2-pyrazole using analytical and computational methods: Paper strip-based detection, live cell imaging, logic gates and keypad lock applications
title_sort host guest interactions of coumarin based 1 2 pyrazole using analytical and computational methods paper strip based detection live cell imaging logic gates and keypad lock applications
topic Chemosensor
NBO
DFT
Logic gates
Keypad lock
url http://www.sciencedirect.com/science/article/pii/S2405844024001087
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