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Rotational spectrum of the weakly bonded C6H6–H2S dimer and comparisons to C6H6–H2O dimer

机译:弱键合C6H6-H2S二聚体的旋转光谱及其与C6H6-H2O二聚体的比较

摘要

Two symmetric-top,delta J = 1 progressions were observed for the C6H6–H2S dimer using a pulsed nozzle Fourier transform microwave spectrometer. The ground-state rotational constants for C6H6–H2S are B = 1168.53759(5) MHz, DJ = 1.4424(7) kHz and DJK = 13.634(2) kHz. The other state observed has a smaller B of 1140.580(1) MHz but requires a negative DJ = –13.80(5) kHz and higher order (H) terms to fit the data. Rotational spectra for the isotopomers C6H6–H234S, C6H6–H233S, C6H6–HDS, C6H6–D2S and 13CC5H6–H2S were also obtained. Except for the dimer with HDS, all other isotopomers gave two progressions like the most abundant isotopomer. Analysis of the ground-state data indicates that H2S is located on the C6 axis of the C6H6 with a c.m. (C6H6)–S distance of 3.818 Å. The angle between the a axis of the dimer and the C2v axis of the H2S is determined to be 28.5°. The C6 axis of C6H6 is nearly coincident with a axis of the dimer. Stark measurements of the two states led to dipole moments of 1.14(2) D for the ground state and 0.96(6) D for the other state. A third progression was observed for C6H6–H2S which appear to have K0 lines split by several MHz, suggesting a nonzero projection of the internal rotation angular momentum of H2S on the dimer a axis. The observation of three different states suggests that the H2S is rotating in a nearly spherical potential leading to three internal rotor states, two of which have Mj = 0 and one having Mj = ±1,Mj being the projection of internal rotational angular momentum on to the a axis of the dimer. The nuclear quadrupole hyperfine constant of the 33S nucleus in the dimer is determined for the two symmetric-top progressions and they are –17.11 MHz for the ground state and –8.45 MHz for the other state, consistent with the assignment to two different internal-rotor states. The 17O quadrupole coupling constant for the two states of C6H6–H2O were measured for comparison and it turned out to be nearly the same in the ground and excited internal rotor state, –1.89 and –1.99 MHz, respectively. The rotational spectrum of the C6H6–H2S complex is very different from that of the C6H6–H2O complex. Model potential calculations predict small barriers of 227, 121, and 356 cm–1 for rotation about a, b and c axes of H2S, respectively, giving quantitative support for the experimental conclusion that H2S is effectively freely rotating in a nearly spherical potential. For the C6H6–H2O complex, the corresponding barriers are 365, 298 and 590 cm–1.
机译:使用脉冲喷嘴傅立叶变换微波光谱仪观察到C6H6-H2S二聚体有两个对称峰,δJ = 1级数。 C6H6-H2S的基态旋转常数为B = 1168.53759(5)MHz,DJ = 1.4424(7)kHz,DJK = 13.634(2)kHz。观察到的另一种状态的B较小,为1140.580(1)MHz,但需要负DJ = –13.80(5)kHz,并且需要较高阶(H)项才能拟合数据。还获得了同位素异构体C6H6-H234S,C6H6-H233S,C6H6-HDS,C6H6-D2S和13CC5H6-H2S的旋转光谱。除了具有HDS的二聚体以外,其他所有的同位素异构体都像最丰富的同位素异构体一样出现了两个变化。对基态数据的分析表明,H2S位于C6H6的C6轴上,且坐标为c.m。 (C6H6)–S距离为3.818Å。二聚体的a轴与H 2 S的C 2v轴之间的角度确定为28.5°。 C6H6的C6轴与二聚体的轴几乎重合。两种状态的严格测量导致基态的偶极矩为1.14(2)D,另一种状态的偶极矩为0.96(6)D。观察到C6H6-H2S的第三次变化,似乎K0线被几MHz分开,表明H2S的内部旋转角动量在二聚体a轴上的非零投影。对三种不同状态的观察表明,H2S在接近球形的电势中旋转,从而导致三种内部转子状态,其中两种具有Mj = 0,一种具有Mj =±1,Mj是内部旋转角动量在上的投影。二聚体的轴。确定了两个对称顶部跃迁中二聚体中33S核的核四极超精细常数,对于基态,它们为–17.11 MHz,对于另一种状态为–8.45 MHz,这与分配给两个不同的内部转子一致状态。测量了C6H6-H2O两种状态的17O四极耦合常数,以进行比较,结果证明它们在基态和受激内部转子状态下分别近似为–1.89和–1.99 MHz。 C6H6-H2S络合物的旋转光谱与C6H6-H2O络合物的旋转光谱非常不同。模型势能计算预测分别围绕H2S的a,b和c轴旋转的227、121和356 cm-1小障碍,为实验结论H2S在几乎球形的势能下有效地自由旋转提供了定量支持。对于C6H6-H2O复合物,相应的壁垒为365、298和590 cm-1。

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