Rasin Puthiyavalappil, Basheer Sabeel M, Haribabu Jebiti, Aneesrahman K N, Manakkadan Vipin, Vadakkedathu Palakkeezhillam Vishnunarayanan Namboothiri, Bhuvanesh Nattamai, Echeverria Cesar, Santibanez Juan F, Sreekanth Anandaram
Department 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, India.
Heliyon. 2024 Jan 5;10(1):e24077. doi: 10.1016/j.heliyon.2024.e24077. eCollection 2024 Jan 15.
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 Cu 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 Cu, the HCPyTSC detection limits were 4.62 nM and 15.36 nM, respectively. Similarly, the binding constants (Kb) for F and Cu ions in acetonitrile medium were found to be 2.06 × 10 M and 1.88 × 10 M. Chemosensor HCPyTSC with and without F and Cu 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.
合成并表征了一种新型的基于香豆素的1,2-吡唑HCPyTSC。已证明该化学传感器具有高效的比色和荧光传感能力,可快速、选择性地检测氟离子和铜离子。在376和430nm处,HCPyTSC对铜离子和氟离子具有选择性传感。通过研究自然键轨道(NBO)分析和基态下C-H键函数的势能曲线(PES),从手头的理论研究中确定去质子化是从吡唑环的“CH”质子处发生的。对于氟离子和铜离子,HCPyTSC的检测限分别为4.62 nM和15.36 nM。同样,在乙腈介质中氟离子和铜离子的结合常数(Kb)分别为2.06×10 M和1.88×10 M。带有和不带有氟离子和铜离子的化学传感器HCPyTSC具有发射和吸收响应,可模拟多种逻辑门,包括与门、异或门和或门。此外,还制备了一种带有HCPyTSC的纸质传感器条,用于实际的、灵活的氟离子传感应用。该纸质传感器在检测氟离子方面比其他阴离子更有效。使用T24细胞的活细胞成像技术研究了HCPyTSC在活细胞中选择性检测氟离子的有效性及其细胞通透性。