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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Observation and rovibrational analysis of the intermolecular HCl libration band nu(1)(6) of HCN-HCl, DCN-HCl and (HCN)-C-13-HCl
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Observation and rovibrational analysis of the intermolecular HCl libration band nu(1)(6) of HCN-HCl, DCN-HCl and (HCN)-C-13-HCl

机译:HCN-HCl,DCN-HCl和(HCN)-C-13-HCl的分子间HCl释放带nu(1)(6)的观察和振动分析

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The high-resolution far-infrared absorption spectrum of the intermolecular HCl libration band nu(6)(1) (nu(B)) of the gaseous molecular complex (HCN)-C-12-HCl and the two isotopically substituted species (HCN)-C-13-HCl and (DCN)-C-12-HCl is recorded by means of static gas-phase Fourier transform far-infrared spectroscopy at 205 K using an electron storage ring source. The rotational structure of the nu(6)(1) band has the typical appearance of a perpendicular type band of a linear polyatomic molecule. The structure is analyzed using a standard semi-rigid linear molecule model including l-type doubling to yield the band origin nu(0), together with values for the upper state rotational constant B', the upper state quartic centrifugal distortion constant D'(J) and the value for the l-type doubling constant q(6). The values for the ground-state spectroscopic constants B '' and D ''(J) for (DCN)-C-12-(HCl)-Cl-35 and (HCN)-C-13-(HCl)-Cl-35 are determined for the first time by ground state combination difference analyses. A number of nu(6)(1) + nu(7)(1) - nu(7)(1) and nu(6)(1) + 2 nu(2)(7) - 2 nu(2)(7) hot bands are observed in the spectra and the sum of the anharmonicity constants X-6,X-7 + g(6,7) is estimated. The observed decrease of the rotational constant B together with the simultaneous increase of the quartic centrifugal distortion constant D-J upon excitation of the HCl libration mode indicate that the hydrogen bond in the molecular complex is significantly destabilized upon intermolecular vibrational excitation. The calculated harmonic force constants for the intermolecular hydrogen bond stretching vibration nu(sigma) for the ground state and the excited HCl libration state indicate that the excitation of the HCl libration mode destabilizes the intermolecular interaction between HCN and HCl by almost 20%. The hydrogen bond is elongated by 0.030 angstrom upon excitation of the nu(6)(1) mode.
机译:气态分子复合物(HCN)-C-12-HCl和两个同位素取代的物质(HCN)的分子间HCl释放带nu(6)(1)(nu(B))的高分辨率远红外吸收光谱)-C-13-HCl和(DCN)-C-12-HCl使用电子存储环源在205 K下通过静态气相傅里叶变换远红外光谱进行记录。 nu(6)(1)带的旋转结构具有线性多原子分子的垂直型带的典型外观。使用标准的半刚性线性分子模型对结构进行分析,该模型包括l型加倍以产生谱带原点nu(0)以及上态旋转常数B',上态四次离心畸变常数D'( J)和l型倍增常数q(6)的值。 (DCN)-C-12-(HCl)-Cl-35和(HCN)-C-13-(HCl)-Cl-的基态光谱常数B''和D''(J)的值通过基态组合差异分析首次确定35。 nu(6)(1)+ nu(7)(1)-nu(7)(1)和nu(6)(1)+ 2 nu(2)(7)-2 nu(2)( 7)在光谱中观察到热带,并估计了非谐常数X-6,X-7 + g(6,7)的总和。观察到的旋转常数B的降低以及HCl释放模式激发后四次离心畸变常数D-J的同时增加表明,分子间振动激发后,分子络合物中的氢键明显失稳。计算的基态和激发的HCl释放态的分子间氢键拉伸振动nu(sigma)的谐波力常数表明,HCl释放模式的激发使HCN和HCl之间的分子间相互作用不稳定了近20%。 nu(6)(1)模激发后,氢键延长0.030埃。

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