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首页> 外文期刊>The Journal of Chemical Physics >THE ROVIBRATIONAL SPECTRUM OF HYDROXYLAMINE - A COMBINED HIGH RESOLUTION EXPERIMENTAL AND THEORETICAL STUDY
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THE ROVIBRATIONAL SPECTRUM OF HYDROXYLAMINE - A COMBINED HIGH RESOLUTION EXPERIMENTAL AND THEORETICAL STUDY

机译:羟胺的旋转谱-高分辨率实验与理论研究的结合。

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This paper reports the rovibrational spectrum of hydroxylamine (NH,OH) recorded by interferometric Fourier transform spectroscopy with a resolution of up to 0.004 cm(-1) close to the Doppler limit at room temperature, from 800 cm(-1) up to the visible range of the spectrum. Detailed rotational analyses for 32 bands include all nine fundamentals and numerous overtones up to 10 500 cm(-1). Approximate absolute band strengths, band centers and vibrational assignments are presented for a total of 72 bands up to the 4v(1) OH stretching overtone. The spectra are interpreted in terms of multidimensional vibrational calculations with potential and dipole surfaces constructed by multidimensional spline interpolation from more than 2x10(5) ab initio MP2/6-31G** points. The full three dimensional treatment of the torsion-inversion problem reveals well separated time scales for the two processes with a cis potential, well supporting localized wave functions for the zero point and fundamental levels. Up to five dimensional normal coordinate models are employed for the analysis and dynamic interpretation of the complete vibrational spectrum up to 21 000 cm(-1). Good quantitative agreement between observed spectra and results from ab initio calculations is obtained with a simple harmonic scaling procedure without any further empirical refinement. The comparison of various coupling schemes reveals an efficient path for the coupling between the OH and NH2 manifolds mediated through the OH bending mode. The implications for the effective homogeneous broadening at high energies are discussed. (C) 1997 American Institute of Physics. [References: 51]
机译:本文报道了通过干涉傅里叶变换光谱法记录的羟胺(NH,OH)的旋转振动光谱,其分辨率高达0.004 cm(-1),接近室温下的多普勒极限,从800 cm(-1)到室温。光谱的可见范围。对32个频段进行的详细旋转分析包括所有9个基本原理以及多达10 500 cm(-1)的许多泛音。给出了直到72v频段(直至4v(1)OH拉伸泛音)的大约绝对频段强度,频段中心和振动分配。光谱是根据多维振动计算进行解释的,其中电位和偶极子表面是从2x10(5)从头算MP2 / 6-31G **点通过多维样条插值法构造的。对扭转反演问题的完整的三维处理揭示了两个过程的顺时针分离的时间尺度,具有顺势,很好地支持了零点和基本能级的局部波动函数。最多使用五维法向坐标模型来分析和动态解释高达21 000 cm(-1)的完整振动谱。使用简单的谐波比例缩放程序即可获得观测光谱与从头算的结果之间的良好定量一致性,而无需任何进一步的经验改进。各种耦合方案的比较揭示了通过OH弯曲模式介导的OH和NH2歧管之间耦合的有效路径。讨论了在高能量下有效均匀扩展的含义。 (C)1997美国物理研究所。 [参考:51]

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