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TD-DFT insights into the sensing potential of the luminescent covalent organic framework for indoor pollutant formaldehyde

机译:TD-DFT洞察室内污染物甲醛发光共价有机骨架的感测电位

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This paper investigates the sensitivity of the luminescent thieno[2,3-b]thiophene-based covalent organic framework (TT-COF) towards the formaldehyde using the density functional theory and time-dependent method. The hydrogen bonding dynamics is explored by comparison of geometries, electronic transition energies, binding energies, UV-vis, and infrared spectra. Frontier molecular orbitals examination, natural population analysis, and plotted electron density difference map describe the quenching process explicitly via electron density distribution. The MOMAP program illuminates the quenching owing to TT-COF-HCHO complex radiative rate constant. Furthermore, the S1-T1 energy gap describes the facilitation of the luminescence quenching through the intersystem crossing. Above all results elaborate the TT-COF's potential to detect the formaldehyde. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文使用密度函数理论和时间依赖性方法研究发光噻吩和噻吩[2,3-b]噻吩基的共价有机骨架(TT-COF)朝向甲醛的敏感性。 通过比较几何,电子转换能量,结合能量,UV-Vis和红外光谱来探索氢键动力学。 前沿分子轨道检查,天然种群分析和绘制的电子密度差异图明确通过电子密度分布明确地描述了淬火过程。 由于TT-COF-HCHO复合辐射速率恒定,MOMAP程序照亮淬火。 此外,S1-T1能隙描述了通过交叉系统交叉的发光淬火的促进。 最重要的是所有结果都详细阐述了TT-COF的潜力检测甲醛。 (c)2019 Elsevier B.v.保留所有权利。

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