McCoy Anne B, Fry Juliane L, Francisco Joseph S, Mollner Andrew K, Okumura Mitchio
Department of Chemistry, The Ohio State University, Columbus, OH 43210, USA.
J Chem Phys. 2005 Mar 8;122(10):104311. doi: 10.1063/1.1859273.
A joint theoretical and experimental investigation is undertaken to study the effects of OH-stretch/HOON torsion coupling and of quantum yield on the previously reported first overtone action spectrum of cis-cis HOONO (peroxynitrous acid). The minimum energy path along the HOON dihedral angle is computed at the coupled cluster singles and doubles with perturbative triples level with correlation consistent polarized quadruple zeta basis set, at the structure optimized using the triple zeta basis set (CCSD(T)/cc-pVQZ//CCSD(T)/cc-pVTZ). The two-dimensional ab initio potential energy and dipole moment surfaces for cis-cis HOONO are calculated as functions of the HOON torsion and OH bond length about the minimum energy path at the CCSD(T)/cc-pVTZ and QCISD/AUG-cc-pVTZ (QCISD-quadratic configuration interaction with single and double excitation and AUG-augmented with diffuse functions) level of theory/basis, respectively. The OH-stretch vibration depends strongly on the torsional angle, and the torsional potential possesses a broad shelf at approximately 90 degrees , the cis-perp conformation. The calculated electronic energies and dipoles are fit to simple functional forms and absorption spectra in the region of the OH fundamental and first overtone are calculated from these surfaces. While the experimental and calculated spectra of the OH fundamental band are in good agreement, significant differences in the intensity patterns are observed between the calculated absorption spectrum and the measured action spectrum in the 2nu(OH) region. These differences are attributed to the fact that several of the experimentally accessible states do not have sufficient energy to dissociate to OH+NO(2) and therefore are not detectable in an action spectrum. Scaling of the intensities of transitions to these states, assuming D(0)=82.0 kJ/mol, is shown to produce a spectrum that is in good agreement with the measured action spectrum. Based on this agreement, we assign two of the features in the spectrum to Deltan=0 transitions (where n is the HOON torsion quantum number) that are blue shifted relative to the origin band, while the large peak near 7000 cm(-1) is assigned to a series of Deltan=+1 transitions, with predominant contributions from torsionally excited states with substantial cis-perp character. The direct absorption spectrum of cis-cis HOONO (6300-6850 cm(-1)) is recorded by cavity ringdown spectroscopy in a discharge flow cell. A single band of HOONO is observed at 6370 cm(-1) and is assigned as the origin of the first OH overtone of cis-cis HOONO. These results imply that the origin band is suppressed by over an order of magnitude in the action spectrum, due to a reduced quantum yield. The striking differences between absorption and action spectra are correctly predicted by the calculations.
开展了一项理论与实验相结合的研究,以探讨OH伸缩/HOON扭转耦合以及量子产率对先前报道的顺式-顺式HOONO(过氧亚硝酸)的第一泛音作用光谱的影响。沿着HOON二面角的最小能量路径是在耦合簇单双激发并微扰包含三激发(CCSD(T))水平下,使用相关一致极化四重zeta基组计算得到的,结构则是在使用三重zeta基组优化的基础上(CCSD(T)/cc-pVQZ//CCSD(T)/cc-pVTZ)。计算了顺式-顺式HOONO的二维从头算势能面和偶极矩面,它们分别是HOON扭转和围绕最小能量路径的OH键长的函数,理论/基组水平分别为CCSD(T)/cc-pVTZ和QCISD/AUG-cc-pVTZ(QCISD - 单双激发的二次组态相互作用,AUG - 含弥散函数的增强基组)。OH伸缩振动强烈依赖于扭转角,扭转势能在大约90度(顺式垂直构象)处有一个宽平台。计算得到的电子能量和偶极矩被拟合成简单的函数形式,并从这些表面计算OH基频和第一泛音区域的吸收光谱。虽然OH基频带的实验光谱和计算光谱吻合良好,但在计算的吸收光谱和2ν(OH)区域测量的作用光谱之间,强度模式存在显著差异。这些差异归因于几个实验可及的状态没有足够的能量解离为OH + NO₂,因此在作用光谱中无法检测到。假设D(0)=82.0 kJ/mol,对这些状态跃迁强度进行缩放后得到的光谱与测量的作用光谱吻合良好。基于这种吻合,我们将光谱中的两个特征归为相对于原点带发生蓝移的Δn = 0跃迁(其中n是HOON扭转量子数),而7000 cm⁻¹附近的大峰归为一系列Δn = +1跃迁,主要贡献来自具有大量顺式垂直特征的扭转激发态。在放电流动池中,通过腔衰荡光谱法记录了顺式-顺式HOONO(6300 - 6850 cm⁻¹)的直接吸收光谱。在6370 cm⁻¹处观察到一条单一的HOONO谱带,并将其指定为顺式-顺式HOONO的第一个OH泛音的原点。这些结果表明,由于量子产率降低,原点带在作用光谱中被抑制了一个数量级以上。计算正确地预测了吸收光谱和作用光谱之间的显著差异。