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首页> 外文期刊>Journal of Molecular Structure >Conformational and structural studies of 2-fluoroethylamine from temperature dependent FT-IR spectra of krypton and xenon solutions and ab initio calculations
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Conformational and structural studies of 2-fluoroethylamine from temperature dependent FT-IR spectra of krypton and xenon solutions and ab initio calculations

机译:从fluoro和氙溶液的随温度变化的FT-IR光谱和从头算的研究2-氟乙胺的构象和结构研究

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摘要

Variable temperature (-55 to -131 degrees C) studies of the infrared spectra (4000-50 cm(-1)) of 2-fluoroethylamine, FCH2CH2NH2 dissolved in liquid xenon and the far infrared in liquid krypton have been carried out. From these data all five possible conformers have been identified and their relative stabilities obtained. The enthalpy differences have been determined among the most stable Gg' conformer and the second stable conformer, Gt, to be 62 +/- 8 cm(-1) (0.74 +/- 0.10 kJ/mol), the third stable conformer, Tg, to be 262 +/- 26 cm(-1) (3.14 +/- 0.3 kJ/mol), the fourth most stable conformer, Tt, to be 289 +/- 45 cm(-1) (3.46 +/- 0.5 kJ/mol) and the fifth most stable conformer, Gg to be 520 +/- 50 cm(-1) (6.24 +/- 0.6 kJ/mol). The percentage of each conformer at ambient temperature is estimated to be with Gg' (42 +/- 4%), Gt (32 +/- 1%), Tg (13 +/- 1%), Tt (5 +/- 1%) and Gg (3 +/- 1%). The first indicator is the NCCF dihedral angle (G = gauche or T = trans) and the second one (g = gauche or t = trans) is the relative position of the lone pair of electrons on the nitrogen atom with respect to the fluorine atom. The conformational stabilities have been predicted from ab initio calculations utilizing several different basis sets up to aug-cc-pVTZ for both MP2(full) and density functional theory calculations by the B3LYP method. By utilizing previously reported microwave rotational constants along with ab initio MP2(full)/6-311+G(d,p) predicted structural values, adjusted r(0) parameters have been obtained for the two most stable conformers. The determined heavy atom structural parameters for the Gg'[Gt] conformer are: the distances (angstrom) C-1-C-2 = 1.509(3) [1.516(3)], C-2-N-3 = 1.466(3)[1.461(3)], C-1-F-4 = 1.400(3)[1.398(3)] and angles in degrees angle N3C2C1 = 109.8(5) [115.5(5)], angle F4C1C2 = 109.2(5)[109.3(5)], angle H10N3H9 = 107.1(5) [107.1(5)](degrees) and tau F4C1C2N3 = 65.3(5) [60.9(5)]. Vibrational assignments have been provided for most of the observed bands which have been supported by MP2(full)/6-31G(d)ab initio calculations to predict harmonic force fields, frequencies, infrared intensities, Raman activities and depolarization ratios for all five conformers. The results are discussed and compared to the corresponding properties of some similar molecules.
机译:已经对2-氟乙胺,溶解在液态氙中的FCH2CH2NH2和液态k中的远红外的红外光谱(4000-50 cm(-1))进行了可变温度(-55至-131摄氏度)研究。从这些数据中,已经鉴定出所有五个可能的构象异构体,并获得了它们的相对稳定性。已确定最稳定的Gg'构象异构体和第二个稳定的构象异构体Gt之间的焓差为62 +/- 8 cm(-1)(0.74 +/- 0.10 kJ / mol),第三个稳定的构象异构体Tg ,是262 +/- 26 cm(-1)(3.14 +/- 0.3 kJ / mol),第四稳定的构象体Tt是289 +/- 45 cm(-1)(3.46 +/- 0.5 kJ / mol)和第五个最稳定的构象异构体,Gg为520 +/- 50 cm(-1)(6.24 +/- 0.6 kJ / mol)。在环境温度下,每个构象体的百分比估计为Gg'(42 +/- 4%),Gt(32 +/- 1%),Tg(13 +/- 1%),Tt(5 +/- 1%)和Gg(3 +/- 1%)。第一个指标是NCCF二面角(G = gauche或T =反式),第二个指标(g = gauche或t =反式)是氮原子上孤对电子相对于氟原子的相对位置。构象稳定性已通过从头算开始的预测,利用B3LYP方法对MP2(full)和密度泛函理论计算使用了几种不同的基础集,直至aug-cc-pVTZ。通过利用先前报道的微波旋转常数以及从头算起MP2(full)/ 6-311 + G(d,p)预测的结构值,已为两个最稳定的构象异构体获得了调整后的r(0)参数。确定的Gg'[Gt]构象体的重原子结构参数为:距离(埃)C-1-C-2 = 1.509(3)[1.516(3)],C-2-N-3 = 1.466( 3)[1.461(3)],C-1-F-4 = 1.400(3)[1.398(3)],以度为单位的角度N3C2C1 = 109.8(5)[115.5(5)],角度F4C1C2 = 109.2( 5)[109.3(5)],角H10N3H9 = 107.1(5)[107.1(5)](度),tau F4C1C2N3 = 65.3(5)[60.9(5)]。已为MP2(full)/ 6-31G(d)ab从头算得到的大多数观察带提供了振动分配,以预测所有五个构象异构体的谐波力场,频率,红外强度,拉曼活性和去极化率。对结果进行了讨论,并将其与某些相似分子的相应特性进行了比较。

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