首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Measuring molecular force fields: Terahertz, inelastic neutron scattering, Raman, FTIR, DFT, and BOMD molecular dynamics of solid l-serine
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Measuring molecular force fields: Terahertz, inelastic neutron scattering, Raman, FTIR, DFT, and BOMD molecular dynamics of solid l-serine

机译:测量分子力场:固体l-丝氨酸的太赫兹,非弹性中子散射,拉曼,FTIR,DFT和BOMD分子动力学

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摘要

A vibrational analysis of polycrystalline l-serine is provided using experimental terahertz, FTIR, Raman and inelastic neutron scattering (INS) spectra, calculated INS spectra - and Born-Oppenheimer molecular dynamics (BOMD) simulations from which the power spectra for the electronegative elements are compared to the THz spectra. Corrections are made to density functional theory (DFT) calculations for van der Waals interactions. Assignments and potential energy distributions are included for all 3N = 336 normal modes of an eight molecule supercell, including those for 48 non-bonded whole molecule translating and rotating vibrations, of which three are acoustic modes, usually not considered. Calculated and observed frequencies differ by an average 3 cm ~(-1) (s = 4). The INS spectrum of these modes below 100 cm ~(-1), calculated from energy second derivatives, show a remarkable similarity to the experimental 10 K spectra. The calculated low frequency modes are insensitive to small changes in cell parameters and geometry. THz intensities are represented by power spectra and not calculated explicitly. Nevertheless, power spectra of 13 ps BOMD trajectories at classical temperatures of 20 K, 400 K, and 500 K are markedly similar to the experimental terahertz spectra at 77 K and 298 K. Calculations on a serine crystal supercell 2 × 2 × 2 molecules deep appear to include, in a crude but fortuitously accurate way, enough of the principle out of phase dispersion to yield a match with experimental frequencies and intensities.
机译:使用实验的太赫兹,FTIR,拉曼光谱和非弹性中子散射(INS)光谱,计算出的INS光谱以及Born-Oppenheimer分子动力学(BOMD)模拟提供了多晶l-丝氨酸的振动分析,从中可以得出负电性元素的功率谱与太赫兹频谱相比。对范德华相互作用的密度泛函理论(DFT)计算进行了校正。包括了八个分子超级电池的所有3N = 336个正常模式的分配和势能分布,包括48个非键合完整分子的平移和旋转振动的分配和势能分布,其中三个是声学模式,通常不考虑。计算和观察到的频率平均相差3 cm〜(-1)(s = 4)。由能量二阶导数计算得出的这些模式在100 cm〜(-1)以下的INS光谱显示出与实验10 K光谱的显着相似性。计算出的低频模式对电池参数和几何形状的微小变化不敏感。 THz强度由功率谱表示,未明确计算。尽管如此,在20 K,400 K和500 K的经典温度下13 ps BOMD轨迹的功率谱与77 K和298 K的实验太赫兹谱显着相似。丝氨酸晶体超级电池的计算深度为2×2×2分子似乎以一种粗略但偶然的准确方式包括了足够多的异相色散原理,从而与实验频率和强度相匹配。

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