OBSERVATION AND ANALYSIS OF ROTATIONAL AND NUCLEAR HYPERFINE-STRUCTURE IN BANDS OF THE RED SYSTEM OF COPPER DICHLORIDE

被引:31
作者
BARNES, MP [1 ]
CARTER, RT [1 ]
LAKIN, NM [1 ]
BROWN, JM [1 ]
机构
[1] PHYS CHEM LAB,S PARKS RD,OXFORD OX1 3QZ,ENGLAND
来源
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS | 1993年 / 89卷 / 17期
关键词
D O I
10.1039/ft9938903205
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Part of the electronic spectrum of copper dichloride, CuCl2, between 590 and 600 nm, has been recorded in the gas phase using a sample prepared at low temperatures (ca. 10 K) in a free jet expansion. Under these conditions it is possible to resolve vibrational, rotational and even hyperfine structure. Nine bands in this region have been analysed in detail. Six involve the dominant isotopomer, (CuCl2)Cl-35 and the other three the mixed form, (CuClCl)-Cl-35-Cl-37 (it is not possible at this stage to identify the copper isotope). All the bands show parallel rotational structure of a linear molecule, consistent with an electronic assignment to a 2PI(u)-2PI(g). transition suggested by ab initio calculations. Seven of the bands are assigned as 2PI3/2-2PI3/2, one as 2PI1/2-2PI1/2 and the other as 2DELTA5/2-2DELTA5/2. The majority of the bands are thought to involve the molecule in its ground vibrational state but the last of these presumably involves excited vibrational levels in the bending vibration nu2. The Cu-Cl bond length determined from the lower-state rotational constant for (CuCl2)-Cl-35 is r(o)'' = 0.203 614(26) nm. The greater occurrence of transitions which involve the 2PI3/2 spin component suggests that this spin component is lower in energy than the 2PI1/2 component, contrary to theoretical expectations. The vibrational structure of the spectrum in the wave-length region studied is very complicated and no detailed vibrational assignments have been made. It is thought that the (0-0) band of the electronic transition lies at significantly longer wavelengths than those covered in this study.
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页码:3205 / 3215
页数:11
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