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首页> 外文期刊>The Journal of Chemical Physics >Ab initio spectroscopic characterization of the radical CH3OCH2 at low temperatures
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Ab initio spectroscopic characterization of the radical CH3OCH2 at low temperatures

机译:AB初始光谱表征在低温下的基团CH3OCH2

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Spectroscopic and structural properties of methoxymethyl radical (CH3OCH2, RDME) are determined using explicitly correlated ab initio methods. This radical of astrophysical and atmospheric relevance has not been fully characterized at low temperatures, which has delayed astrophysical research. We provide rovibrational parameters, excitations to the low energy electronic states, torsional and inversion barriers, and low vibrational energy levels. In the electronic ground state (X(2)A), which appears "clean" from nonadiabatic effects, the minimum energy structure is an asymmetric geometry whose rotational constants and dipole moment have been determined to be A(0) = 46 718.67 MHz, B-0 = 10 748.42 MHz, and C-0 = 9272.51 MHz, and 1.432D (mu(A) = 0.695D, mu(B) = 1.215D, mu(C) = 0.302D), respectively. A variational procedure has been applied to determine torsion-inversion energy levels. Each level splits into 3 subcomponents (A(1)/A(2) and E) corresponding to the three methyl torsion minima. Although the potential energy surface presents 12 minima, at low temperatures, the infrared band shapes correspond to a surface with only three minima because the top of the inversion V-alpha barrier at ff = 0 X (109 cm(-1)) stands below the zero point vibrational energy and the CH2 torsional barrier is relatively high (similar to 2000 cm(-1)). The methyl torsion barrier was computed to be similar to 500 cm(-1) and produces a splitting of 0.01 cm(-1) of the ground vibrational state. Published under license by AIP Publishing.
机译:使用明确相关的AB Initio方法测定甲氧基甲基自由基(CH3OCH2,RDME)的光谱和结构性质。这种天体物理和大气相关性的激进尚未在低温下完全表征,其延迟了天体物理学研究。我们提供罗维奇参数,激发到低能量电子状态,扭转和反转障碍,以及低振动能量水平。在电子地面(x(2)a)中出现“清洁”的非驱散效应,最小能量结构是不对称的几何形状,其旋转常数和偶极矩已经被确定为(0)= 46 718.67 MHz, B-0 = 10 748.42 MHz,C-0 = 9272.51 MHz,1.432D(mu(a)= 0.695d,mu(b)= 1.215d,mu(c)= 0.302d)。已经应用变分过程来确定扭转反转能量水平。每个级别分成3个子组件(a(1)/ a(2)和e)对应于三个甲基扭转最小值。尽管潜在的能量表面在低温下呈现12极小,但红外带形状对应于只有三个最小值的表面,因为FF = 0 x处的反转V-α屏障的顶部(109cm(-1))静止零点振动能量和CH2扭转屏障相对较高(类似于2000cm(-1))。计算甲基扭转屏障以类似于500cm(-1),并产生0.01cm(-1)的接地振动状态。通过AIP发布在许可证下发布。

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