首页> 外文期刊>The Journal of Chemical Physics >PAIRWISE AND NONPAIRWISE ADDITIVE FORCES IN WEAKLY BOUND COMPLEXES - HIGH RESOLUTION INFRARED SPECTROSCOPY OF ARNDF (N=1,2,3)
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PAIRWISE AND NONPAIRWISE ADDITIVE FORCES IN WEAKLY BOUND COMPLEXES - HIGH RESOLUTION INFRARED SPECTROSCOPY OF ARNDF (N=1,2,3)

机译:弱束缚复合物中的双态和非双态相加力-ARNDF的高分辨率红外光谱(N = 1,2,3)

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High resolution infrared spectra of the v(DF)=1 <-- 0 stretch in ArnDF (n = 1-3) have been recorded using a slit-jet infrared spectrometer. Analysis of the rotationally resolved spectra provides vibrationally averaged geometries and vibrational origins for a DF chromophore sequentially ''solvated'' by Ar atoms. Calculations using pairwise additive Ar-Ar and Ar-DF potentials predict lowest energy equilibrium structures consistent with the vibrationally averaged geometries inferred spectroscopically. Variational calculations by Ernesti and Hutson [A. Ernesti and J. M. Hutson, Faraday Discuss. Chem. Soc. (1994)] using pairwise additive potentials predict rotational constants which are in qualitative agreement with, but consistently larger than, the experimental values. The inclusion of nonpairwise additive (three-body) terms improves the agreement, though still not to within the uncertainty of the pair potentials. The vibrational redshifts of 8.696, 11.677, and 14.461 cm(-1) for n=1-3, respectively, reflect a nonlinear dependence of the redshift on the number of Ar atoms. Both the variational calculations of Ernesti and Hutson and diffusion quantum Monte Carlo calculations [M. Lewerenz, J. Chem. Phys. (in press)] using pairwise additive potentials systematically overpredict the magnitude of these redshifts, further signifying the need for corrective three-body terms. Analysis of the ArnDF (n=2,3) rovibrational line shapes reveals an upper limit to homogeneous broadening on the order of 2-3 MHz, consistent with vibrational predissociation lifetimes in excess of 50 ns. (C) 1995 American Institute of Physics. [References: 82]
机译:使用狭缝喷射红外光谱仪记录了ArnDF(n = 1-3)中v(DF)= 1 <-0拉伸的高分辨率红外光谱。旋转解析光谱的分析提供了被Ar原子顺序``溶解''的DF发色团的振动平均几何形状和振动起源。使用成对的Ar-Ar和Ar-DF势进行的计算预测了最低能量平衡结构,该结构与通过光谱法推断的振动平均几何形状一致。 Ernesti和Hutson [A. Ernesti和J. M. Hutson,《法拉第讨论》。化学Soc。 (1994)]使用成对加性势预测旋转常数,该旋转常数与实验值定性一致,但始终大于实验值。包括非成对加性(三体)项可以改善一致性,尽管仍然不在成对电位的不确定性之内。对于n = 1-3,振动红移分别为8.696、11.677和14.461 cm(-1),反映了红移对Ar原子数量的非线性依赖性。 Ernesti和Hutson的变分计算以及扩散量子蒙特卡洛计算[M. Lewerenz,J. Chem。物理(在印刷中)]使用成对加法电位系统地预测了这些红移的幅度,进一步表明需要校正三体项。对ArnDF(n = 2,3)旋转线形的分析显示,均匀扩展的上限约为2-3 MHz,这与振动预离解寿命超过50 ns相一致。 (C)1995年美国物理研究所。 [参考:82]

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