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Infrared overtone spectroscopy and unimolecular decay dynamics of peroxynitrous acid

机译:过氧亚硝酸的红外谐波光谱和单分子衰减动力学

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Peroxynitrous acid (HOONO) is generated in a pulsed supersonic expansion through recombination of photolytically generated OH and NO2 radicals. A rotationally resolved infrared action spectrum of HOONO is obtained in the OH overtone region at 6971.351(4) cm(-1) (origin), providing definitive spectroscopic identification of the trans-perp (tp) conformer of HOONO. Analysis of the rotational band structure yields rotational constants for the near prolate asymmetric top, the ratio of the a-type to c-type components of the transition dipole moment for the hybrid band, and a homogeneous linewidth arising from intramolecular vibrational energy redistribution and/or dissociation. The quantum state distribution of the OH (nu=0,J(OH)) products from dissociation is well characterized by a microcanonical statistical distribution constrained only by the energy available to products, 1304+/-38 cm(-1). This yields a 5667+/-38 cm(-1) [16.2(1) kcal mol(-1)] binding energy for tp-HOONO. An equivalent available energy and corresponding binding energy are obtained from the highest observed OH product state. Complementary high level ab initio calculations are carried out in conjunction with second-order vibrational perturbation theory to predict the spectroscopic observables associated with the OH overtone transition of tp-HOONO including its vibrational frequency, rotational constants, and transition dipole moment. The same approach is used to compute frequencies and intensities of multiple quantum transitions that aid in the assignment of weaker features observed in the OH overtone region, in particular, a combination band of tp-HOONO involving the HOON torsional mode. (C) 2005 American Institute of Physics.
机译:过氧亚硝酸(HOONO)通过光解产生的OH和NO2自由基的重组以脉冲超音速膨胀的形式产生。 HOONO的旋转分辨红外作用谱是在697.351(4)cm(-1)(原始)的OH泛音区域中获得的,从而提供了HOONO的反渗透(tp)构象异构体的确定光谱识别。旋转带结构的分析产生了近似扁长的不对称顶部的旋转常数,杂化带跃迁偶极矩的a型和c型分量之比,以及分子内振动能重新分布和/或产生的均匀线宽或解离。离解的OH(nu = 0,J(OH))产品的量子态分布通过微规范统计分布很好地表征,该分布仅受产品可用能量1304 +/- 38 cm(-1)的约束。这为tp-HOONO产生5667 +/- 38 cm(-1)[16.2(1)kcal mol(-1)]结合能。从最高的OH产物状态获得了等效的可用能量和相应的结合能。结合二阶振动摄动理论进行了补充的高阶从头计算,以预测与tp-HOONO OH泛音跃迁相关的光谱可观察物,包括其振动频率,旋转常数和跃迁偶极矩。使用相同的方法来计算多个量子跃迁的频率和强度,以帮助分配在OH泛音区域中观察到的较弱特征,特别是涉及HOON扭转模式的tp-HOONO的组合谱带。 (C)2005美国物理研究所。

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