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香豆素衍生物的探索:用于偶极矩估计和热传感应用的实验与计算建模

Exploration of Coumarin Derivative: Experimental and Computational Modeling for Dipole Moment Estimation and Thermal Sensing Application.

作者信息

Mulla Bi Bi Ayisha, Nesaragi Aravind R, M Mussuvir Pasha K, Kamble Ravindra R, Sidarai Ashok H

机构信息

Department of Studies in Physics, Karnatak University, Dharwad, 580003, Karnataka, India.

Centre for Nano and Material Science, Jain (Deemed-to-Be University), Jain Global Campus, Kanakapura, Bangalore, 562112, Karnatak, India.

出版信息

J Fluoresc. 2024 Jul;34(4):1719-1735. doi: 10.1007/s10895-023-03364-3. Epub 2023 Aug 19.

Abstract

The Optical properties of the FBTC (1-((4-((5-chlorobenzo[d]oxazol-2-ylthio)methyl)-1H-1,2,3-triazol-1-yl)methyl)-3H-benzo[f]chromen-3-one) molecule were studied experimentally and theoretically. The spectra of absorption and fluorescence were recorded in various solvents to explore their Solvatochromic behavior and dipole moment at room temperature. To determine the ground and excited state of dipole moment experimentally and theoretically, we employed different Solvatochromic techniques, including microscopic solvent polarity functions developed by Lippert, Bakhshiev, Kawaski-Chamma-Viallet, and Reichardt's, as well as density functional theory (DFT) and time-dependent density functional theory (TD-DFT) methods. The stability of the excited state dipole moment in FBTC is higher. Using prime functional, FBTC was optimized in its ground state, and its HOMO (Highest Occupied Molecular Orbital) and LUMO (Lowest Unoccupied Molecular Orbital), energies were estimated. These values were then compared with those obtained through cyclic voltammetry. Based on the HOMO and LUMO values given, we calculated the global reactivity parameter and energy gap, which was found to be low at 3.77 eV. This study also includes an estimation of electron absorption energies and oscillator strength. Natural population analysis (NPA), Milliken atomic charge, and molecular electrostatic potential (MESP) map are correlated. In addition, FBTC exhibited exceptional physiological temperature sensing behaviour from 20 °C -65 °C with high relative sensitivity and firm stability. Hence these results confirm that FBTC is a potential candidate for photonic devices and it's also applicable in optical temperature sensing.

摘要

对FBTC(1-((4-((5-氯苯并[d]恶唑-2-基硫代)甲基)-1H-1,2,3-三唑-1-基)甲基)-3H-苯并[f]色烯-3-酮)分子的光学性质进行了实验和理论研究。在各种溶剂中记录吸收光谱和荧光光谱,以探究其在室温下的溶剂化显色行为和偶极矩。为了通过实验和理论确定基态和激发态的偶极矩,我们采用了不同的溶剂化显色技术,包括Lippert、Bakhshiev、Kawaski-Chamma-Viallet开发的微观溶剂极性函数以及Reichardt函数,还有密度泛函理论(DFT)和含时密度泛函理论(TD-DFT)方法。FBTC中激发态偶极矩的稳定性更高。使用prime泛函对FBTC的基态进行了优化,并估算了其最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)的能量。然后将这些值与通过循环伏安法获得的值进行比较。根据给出的HOMO和LUMO值,我们计算了全局反应性参数和能隙,发现其较低为3.77电子伏特。该研究还包括对电子吸收能量和振子强度的估算。对自然布居分析(NPA)、密立根原子电荷和分子静电势(MESP)图进行了关联。此外,FBTC在20℃至65℃范围内表现出优异的生理温度传感行为,具有高相对灵敏度和强稳定性。因此,这些结果证实FBTC是光子器件的潜在候选材料,并且也适用于光学温度传感。

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