首页> 外文期刊>The Journal of Chemical Physics >SPECTROSCOPY OF CRF - ROTATIONAL ANALYSIS OF THE B-6-PI-X(6)SIGMA(+) BAND SYSTEM IN THE 1.2 MU-M REGION
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SPECTROSCOPY OF CRF - ROTATIONAL ANALYSIS OF THE B-6-PI-X(6)SIGMA(+) BAND SYSTEM IN THE 1.2 MU-M REGION

机译:CRF的光谱-1.2 MU-M区域中B-6-PI-X(6)SIGMA(+)带系统的旋转分析

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The B (6) Pi-X (6) Sigma(+) band system of the CrF radical has been recorded in emission with FTS techniques in the region between 6965 and 9240 cm(-1), using a resolution of 0.025 cm(-1). A rotational analysis including the (0,0), (1,1), (1,0), (0,1) and (1,2) bands of this system has been carried out, and a set of molecular parameters has been derived for the B (6) Pi state. The present analysis has also resulted in substantially better determined values for the lambda and gamma parameters of the X (6) Sigma(+) ground state. An improved set of molecular parameters has been derived for the previously analyzed, heavily perturbed A (6) Sigma(+) state. The present analysis gives strong support for the interpretation that the local perturbations in the upsilon = 0-3 levels of A (6) Sigma(+) are due to interactions with the vibrational levels upsilon = 3-6 of the B (6) Pi state. Earlier suggestions involving a low-lying (4) Pi state as the dominating perturber of the A (6) Sigma(+) state must now be considered as erroneous. A previously suggested interpretation of the 7400 cm(-1) band as being possibly due to a quartet transition has also been shown to be in error. The derived first order spin-orbit parameter value of B (6) Pi [A = 47.0382(18) cm(-1)] and the equilibrium bond distances of X (6) Sigma(+) [1.7839 Angstrom], A (6) Sigma(+) [1.8919 Angstrom], and B (6) Pi [1.8277 Angstrom] have been discussed, and it has been proposed that the 9 sigma (Cr-4s-4p) molecular orbital of CrF is slightly bonding, while 4 pi (Cr-3d pi) is nonbonding and 10 sigma (Cr-3d sigma)antibonding. (C) 1996 American Institute of Physics. [References: 9]
机译:CrF自由基的B(6)Pi-X(6)Sigma(+)能带系统已通过FTS技术在发射中在6965和9240 cm(-1)之间的区域中记录,分辨率为0.025 cm(- 1)。对该系统的(0,0),(1,1),(1,0),(0,1)和(1,2)谱带进行了旋转分析,并且一组分子参数具有得出B(6)Pi状态。本分析还为X(6)Sigma(+)基态的Lambda和gamma参数确定了更好的确定值。对于先前分析的,严重扰动的A(6)Sigma(+)状态,已经获得了一组改进的分子参数。本分析为以下解释提供了有力的支持:upsilon = 0-3级的A(6)Sigma(+)的局部扰动是由于与upsilon = 3-6级的B(6)Pi的振动级的相互作用引起的州。现在必须将涉及低洼(4)Pi状态作为A(6)Sigma(+)状态的主要干扰者的早期建议视为错误。先前建议的对7400 cm(-1)频段的解释可能是由于四重音过渡所致,也已显示出错误。推导的B(6)Pi [A = 47.0382(18)cm(-1)]的一阶自旋轨道参数值和X(6)Sigma(+)[1.7839埃],A(6 )已经讨论了Sigma(+)[1.8919埃]和B(6)Pi [1.8277埃],并且有人提出CrF的9σ(Cr-4s-4p)分子轨道是轻微键合的,而4 pi(Cr-3d pi)是非键合和10 sigma(Cr-3d sigma)反键。 (C)1996年美国物理研究所。 [参考:9]

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