首页> 外文期刊>Journal of Physical Organic Chemistry >Vibrational spectra, conformational properties and argon matrix photochemistry of diacetyl diselenide, CH3C(O)Se2C(O)CH3
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Vibrational spectra, conformational properties and argon matrix photochemistry of diacetyl diselenide, CH3C(O)Se2C(O)CH3

机译:二乙酰二硒化物CH3C(O)Se2C(O)CH3的振动光谱,构象性质和氩气基质光化学

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By oxidation of selenoacetic acid, CH3C(O)SeH, we have prepared the hitherto unknown diacetyl diselenide, [CH3C(O)Se](2). Its vibrational properties were studied experimentally, both in neat liquid (Fourier transform infrared spectroscopy and Raman) with the molecule isolated in argon matrix at low temperatures and theoretically using MP2 and B3LYP methods in combination with 6-31+G(d), 6-311++G(3df,3dp) or aug-cc-pvDZ basis sets. Analysis of Ar matrix spectra reveals a conformational equilibrium in gas phase at room temperature, which was interpreted by considering only two of the three stable rotamers predicted by our three-dimensional potential energy surface scans. Energetic properties of three minima found theoretically were further studied in terms of donor-acceptor interactions by using natural bond orbital calculations at the same levels of theory. From this, it was possible to rationalize the conformational stability order and molecular structures by means of vicinal hyperconjugative delocalizations involving lone pairs on selenium or oxygen atoms and C=O, C-C or Se-C antibonding orbitals. The photochemistry of the compound in the argon matrix in the range between 200 and 800nm was also investigated, revealing only one photochemical path to produce ketene, H2C=C=O, methylselane, CH3SeH, and carbonyl selenide, OCSe. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:通过硒乙酸CH3C(O)SeH的氧化,我们制备了迄今未知的二乙酰二硒化物[CH3C(O)Se](2)。在纯液体(傅里叶变换红外光谱和拉曼光谱)中,用低温在氩气中分离出分子的方法,通过实验研究了它的振动特性,并在理论上使用MP2和B3LYP方法结合6-31 + G(d),6- 311 ++ G(3df,3dp)或aug-cc-pvDZ基本集。 Ar矩阵光谱的分析揭示了室温下气相的构象平衡,这是通过仅考虑由我们的三维势能面扫描预测的三个稳定旋转异构体中的两个来解释的。通过在相同理论水平上使用自然键轨道计算,进一步研究了理论上发现的三个极小值的能量性质,根据供体-受体相互作用进行了研究。由此,可以通过涉及硒或氧原子上的孤对以及C = O,C-C或Se-C反键轨道的邻近超共轭离域化来合理化构象稳定性顺序和分子结构。还研究了该化合物在200-800nm范围内的氩气基质中的光化学反应,揭示了仅一种光化学途径可生成烯酮,H2C = C = O,甲基硒烷,CH3SeH和羰基硒化物OCSe。版权所有(c)2016 John Wiley&Sons,Ltd.

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