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首页> 外文期刊>Journal of Molecular Structure >A combined experimental and theoretical investigation of 2-Thienylboronic acid: Conformational search, molecular structure, NBO, NLO and FT-IR, FT-Raman, NMR and UV spectral analysis
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A combined experimental and theoretical investigation of 2-Thienylboronic acid: Conformational search, molecular structure, NBO, NLO and FT-IR, FT-Raman, NMR and UV spectral analysis

机译:2-噻吩硼酸的组合实验和理论研究:构象搜索,分子结构,NBO,NLO和FT-IR,FT-Raman,NMR和UV光谱分析

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The solid state Fourier transform infrared (FT-IR) and Fourier transform Raman (FT-Raman) spectra of 2-Thienylboronic acid (2TBA), were recorded in the range of 4000–400 cm~(-1) and 4000–100 cm~(-1), respectively. DFT/B3LYP theory was used for the optimization of the ground state geometry and simulation of the infrared and Raman spectra of the title molecule. To determine lowest-energy molecular conformation of the studied molecule, the selected torsion angles were varied in steps of 10° and complete 3D molecular energy profile was calculated. Among the four possible conformers (Trans–Trans, Cis–Cis, Trans–Cis and Cis–Trans), the most stable conformer of 2TBA is the Trans–Cis form. The vibrational wavenumbers and their assignments were carried out theoretically using the Gaussian09 set of quantum chemistry codes and the normal modes were calculated using MOLVIB program. Experimental FT-IR and FT-Raman spectra of the title compound were compared with the spectral data obtained by DFT/ B3LYP method. Dipole moment, polarizability, first static hyperpolarizability and molecular electrostatic potential surface (MEPs) map have been calculated to get a better perception of the properties of the title molecule. Natural bond orbital (NBO) analysis was performed to study the stability of the molecule arising from charge delocalization. UV–Vis spectrum of the title molecule was also recorded (500–200 nm) in methanol and electronic properties such as frontier orbitals and energy gap were calculated by TD-DFT approach. The ~1H nuclear magnetic resonance (NMR) chemical shifts of the studied molecule were recorded in DMSO_(-d6) and calculated by Gauge-Including Atomic Orbital (GIAO) method.
机译:2-噻吩硼酸(2TBA)的固态傅立叶变换红外(FT-IR)和傅立叶变换拉曼(FT-Raman)光谱记录在4000–400 cm〜(-1)和4000–100 cm范围内〜(-1)。 DFT / B3LYP理论用于优化基态几何结构以及模拟标题分子的红外光谱和拉曼光谱。为了确定所研究分子的最低能量分子构象,选择的扭转角以10°的步长变化,并计算出完整的3D分子能量分布。在四个可能的构象异构体(反式-反式,顺式-顺式,反式-顺式和顺式-反式)中,最稳定的2TBA顺式是反式-顺式形式。振动波数及其分配是使用Gaussian09量子化学代码集进行理论计算的,而正常模态是使用MOLVIB程序计算的。将标题化合物的实验FT-IR和FT-Raman光谱与通过DFT / B3LYP方法获得的光谱数据进行了比较。计算了偶极矩,极化率,第一静电超极化率和分子静电势面(MEP)图,以更好地理解标题分子的性质。进行了自然键轨道(NBO)分析,以研究由于电荷离域而产生的分子稳定性。在甲醇中也记录了标题分子的UV-Vis光谱(500-200 nm),并且通过TD-DFT方法计算了电子特性,如前沿轨道和能隙。将被研究分子的〜1H核磁共振(NMR)化学位移记录在DMSO _(-d6)中,并通过包括原子轨道的量规(GIAO)方法进行计算。

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