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Gas phase electronic spectrum of the HSCCS radical by laser-induced fluorescence spectroscopy

机译:HSCCS自由基的气相电子光谱的激光诱导荧光光谱法

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In a discharged supersonic jet of a CS2 and C2H2 mixture, a vibronic band system of a new radical species was observed in the energy region 21800-23000 cm(-1) by laser-induced fluorescence (LIF) spectroscopy. The LIF excitation spectrum shows progressions with 490 and 80 cm(-1) separations. The vibronic structure of a dispersed fluorescence (DF) spectrum, obtained by tuning a probe laser to the vibronic origin band, also consists of progressions with 520 and 100 cm(-1) separations. A high-resolution laser scan provided a rotationally resolved LIF excitation spectrum for the vibronic origin band, showing the rotational structure of a-type transitions of a near-prolate top. Several chemical tests indicate that the spectral carrier contains sulfur atom(s), one hydrogen atom and more than one carbon atoms. Electronic transition energy, vibrational frequencies, and rotational constants of this species are similar to those of SCCS-[M. Nakajima, Y. Yoneda, Y. Sumiyoshi, T. Nagata, Y. Endo, J. Chem. Phys. 119(2003)78057813.], and the spectral carrier was assigned as an isoelectronic radical, bent HSCCS. Ab initio geometrical optimizations supported the spectral carrier to be HSCCS. The observed electronic transition was assigned to be the (B) over tilde (2)A ''(X) over tilde (2)A '' transition, which corresponds to the Pi-Pi transition in the limit of linear geometry. The observed vibrations in the excitation and DF spectra were assigned as the symmetric C-S stretching (nu(5)) and SCC bending (nu(7)) modes by comparing the results of theoretical calculations. (c) 2005 Elsevier Inc. All rights reserved.
机译:在放电的CS2和C2H2混合物的超音速喷射中,通过激光诱导荧光(LIF)光谱在能量区域21800-23000 cm(-1)处观察到一个新的自由基物种的振动带系统。 LIF激发光谱显示490和80 cm(-1)间隔的进展。通过将探测激光调谐到电子振动带而获得的分散荧光(DF)光谱的电子振动结构,也包括520和100 cm(-1)的间隔。高分辨率激光扫描为震动源带提供了旋转解析的LIF激发光谱,显示了近扁平顶部的a型跃迁的旋转结构。多项化学测试表明,光谱载体包含一个或多个硫原子,一个氢原子和一个以上碳原子。该物种的电子跃迁能,振动频率和旋转常数与SCCS- [M]相似。中岛Y.米田Y.住吉Y.永田T.远藤Y.化学物理119(2003)78057813。],并且将光谱载波指定为等电子基弯曲的HSCCS。从头开始的几何优化支持频谱载波为HSCCS。观察到的电子跃迁被指定为波浪线(2)A''(B)波浪线(2)A”上的(B)跃迁,这对应于线性几何极限中的Pi-Pi跃迁。通过比较理论计算的结果,在激励和DF谱中观察到的振动被指定为对称C-S拉伸(nu(5))和SCC弯曲(nu(7))模式。 (c)2005 Elsevier Inc.保留所有权利。

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