首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Spectroscopic (FT-IR, FT-Raman and UV-Visible) investigations, NMR chemical shielding anisotropy (CSA) parameters of 2,6-Diainino-4-chloropyrimidine for dye sensitized solar cells using density functional theory
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Spectroscopic (FT-IR, FT-Raman and UV-Visible) investigations, NMR chemical shielding anisotropy (CSA) parameters of 2,6-Diainino-4-chloropyrimidine for dye sensitized solar cells using density functional theory

机译:光谱(FT-IR,FT-Raman和UV可见)调查,NMR化学屏蔽各向异性(CSA)参数2,6-二氨基-4-氯嘧啶用于使用密度函数理论的敏化太阳能电池

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The molecular structure, geometry optimization, vibrational frequencies of organic dye sensitizer 2,6-Diamino-4-chloropyrimidine (DACP) were studied based on Hartree-Fock (HF) and density functional theory (DFT) using B3LYP methods with 6-311++G(d,p) basis set. Ultraviolet-Visible (UV-Vis) spectrum was investigated by time dependent DFT (TD-DFT). Features of the electronic absorption spectrum in the UV-Visible regions were assigned based on TD-DFT calculation. The absorption bands are assigned to transitions. The interfacial electron transfer between semiconductor TiO2 electrode and dye sensitizer DACP is due to an electron injection process from excited dye to the semiconductor's conduction band. The observed and the calculated frequencies are found to be in good agreement. The energies of the frontier molecular orbitals (FMOS) have also been determined. The chemical shielding anisotropic (CSA) parameters are calculated from the NMR analysis, Stability of the molecule arising from hyperconjugative interactions and charge delocalization has been analyzed using natural bond orbital (NBO) analysis. (C) 2014 Elsevier B.V. All rights reserved.
机译:基于Hartree-Fock(HF)和密度泛函理论(DFT)研究了有机染料敏化剂2,6-二氨基-4-氯嘧啶(DACP)的分子结构,几何优化,振动频率,使用B311 + + g(d,p)基础集。通过时间依赖性DFT(TD-DFT)研究了紫外线可见(UV-VIS)光谱。基于TD-DFT计算分配UV可见区域中的电子吸收光谱的特征。吸收带分配给转换。半导体TiO2电极和染料敏化剂DACP之间的界面电子传递是由于来自激发染料到半导体的导带的电子注入过程。观察到的和计算的频率是良好的一致性的。还确定了前沿分子轨道(FMOS)的能量。通过NMR分析计算化学屏蔽各向异性(CSA)参数,使用天然键(NBO)分析分析了由高端相互作用和电荷描移产生的分子的稳定性。 (c)2014 Elsevier B.V.保留所有权利。

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