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首页> 外文期刊>The Journal of Chemical Physics >Effects of (18)O isotopic substitution on the rotational spectra and potential splitting in the OH-OH2 complex: improved measurements for (16)OH-(16)OH2 and (18)OH-(18)OH2, new measurements for the mixed isotopic forms, and ab initio calculations of the (2)A'-(2)A' energy separation.
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Effects of (18)O isotopic substitution on the rotational spectra and potential splitting in the OH-OH2 complex: improved measurements for (16)OH-(16)OH2 and (18)OH-(18)OH2, new measurements for the mixed isotopic forms, and ab initio calculations of the (2)A'-(2)A' energy separation.

机译:(18)O同位素取代对OH-OH2络合物旋转光谱和电势分裂的影响:(16)OH-(16)OH2和(18)OH-(18)OH2的改进测量值,混合后的新测量值同位素形式以及(2)A'-(2)A“能量分离的从头算。

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Rotational spectra have been observed for (OH)-O-16-(OH2)-O-16, (OH)-O-16-(OH2)-O-18, (OH)-O-18-(OH2)-O-16, and (OH)-O-18-(OH2)-O-18 with complete resolution of the nuclear magnetic hyperfine structure from the OH and water protons. Transition frequencies have been analyzed for each isotopic form using the model of Marshall and Lester [J. Chem. Phys. 121, 3019 (2004)], which accounts for partial quenching of the OH orbital angular momentum and the decoupling of the electronic spin from the OH molecular axis. The analysis accounts for both the ground ((2)A') and first electronically excited ((2)A'') states of the system, which correspond roughly to occupancy by the odd electron in the p(y) and p(x) orbitals, respectively (where p(y) is in the mirror plane of the complex and p(x) is perpendicular to p(y) and the OH bond axis). The spectroscopic measurements yield a parameter, rho, which is equal to the vibrationally averaged (2)A'-(2)A'' energy separation that would be obtained if spin-orbit coupling and rotation were absent. For the parent species, rho=-146.560 27(9) cm(-1). O-18 substitution on the water increases vertical bar rho vertical bar by 0.105 29(10) cm(-1), while substitution on the OH decreases vertical bar rho vertical bar by 0.068 64(11) cm(-1). In the OH-OH2 complex, the observed value of rho implies an energy spacing between the rotationless levels of the (2)A' and (2)A'' states of 203.76 cm(-1). Ab initio calculations have been performed with quadratic configuration interaction with single and double excitations (QCISD), as well as multireference configuration interaction (MRCI), both with and without the inclusion of spin-orbit coupling. The MRCI calculations with spin-orbit coupling perform the best, giving a value of 171 cm(-1) for the (2)A'-(2)A'' energy spacing at the equilibrium geometry. Calculations along the large-amplitude bending coordinates of the OH and OH2 moieties within the complex are presented and are shown to be consistent with a vibrational averaging effect as the main cause of the observed isotopic sensitivity of rho. (c) 2008 American Institute of Physics.
机译:已观察到(OH)-O-16-(OH2)-O-16,(OH)-O-16-(OH2)-O-18,(OH)-O-18-(OH2)-的旋转光谱O-16和(OH)-O-18-(OH2)-O-18,具有由OH和水质子完全解析的核磁超精细结构的信息。已经使用Marshall和Lester模型对每种同位素形式的跃迁频率进行了分析[J.化学物理121,3019(2004)],解释了OH轨道角动量的部分淬灭和电子自旋与OH分子轴的解耦。该分析同时考虑了系统的基态((2)A'和第一电子激发态((2)A''),这大致对应于p(y)和p(x )轨道(其中p(y)在复合物的镜平面中,p(x)垂直于p(y)和OH键轴)。光谱测量结果得出的参数rho等于如果没有自旋轨道耦合和自转将获得的振动平均(2)A'-(2)A''能量间隔。对于亲本物种,rho = -146.560 27(9)cm(-1)。在水上进行O-18取代会使竖条rho竖条增加0.105 29(10)cm(-1),而在OH上取代将竖条rho竖条减少0.068 64(11)cm(-1)。在OH-OH2络合物中,rho的观测值表示(2)A'和(2)A''状态的无旋转能级之间的能量间隔为203.76 cm(-1)。从头计算已通过具有单激发和双激发的二次配位相互作用(QCISD)以及多参考配位相互作用(MRCI)进行,无论是否包含自旋轨道耦合。自旋轨道耦合的MRCI计算性能最佳,在平衡几何条件下,(2)A'-(2)A''能量间距的值为171 cm(-1)。提出了沿配合物内OH和OH2部分的大振幅弯曲坐标进行的计算,并显示出与振动平均效应一致,这是观察到的rho同位素敏感性的主要原因。 (c)2008年美国物理研究所。

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