首页> 外文期刊>The Journal of Chemical Physics >Mid-infrared signatures of hydroxyl containing water clusters: Infrared laser Stark spectroscopy of OH-H2O and OH(D2O)(n) (n=1-3)
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Mid-infrared signatures of hydroxyl containing water clusters: Infrared laser Stark spectroscopy of OH-H2O and OH(D2O)(n) (n=1-3)

机译:含羟基水团簇的中红外特征:OH-H2O和OH(D2O)(n)的红外激光斯塔克光谱(n = 1-3)

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Small water clusters containing a single hydroxyl radical are synthesized in liquid helium droplets. The OH-H2O and OH(D2O)(n) clusters (n = 1-3) are probed with infrared laser spectroscopy in the vicinity of the hydroxyl radical OH stretch vibration. Experimental band origins are qualitatively consistent with ab initio calculations of the global minimum structures; however, frequency shifts from isolated OH are significantly over-predicted by both B3LYP and MP2 methods. An effective Hamiltonian that accounts for partial quenching of electronic angular momentum is used to analyze Stark spectra of the OH-H2O and OH-D2O binary complexes, revealing a 3.70(5) D permanent electric dipole moment. Computations of the dipole moment are in good agreement with experiment when large-amplitude vibrational averaging is taken into account. Polarization spectroscopy is employed to characterize two vibrational bands assigned to OH(D2O)(2), revealing two nearly isoenergetic cyclic isomers that differ in the orientation of the non-hydrogen-bonded deuterium atoms relative to the plane of the three oxygen atoms. The dipole moments for these clusters are determined to be approximately 2.5 and 1.8 D for "up-up" and "up-down" structures, respectively. Hydroxyl stretching bands of larger clusters containing three or more D2O molecules are observed shifted approximately 300 cm(-1) to the red of the isolated OH radical. Pressure dependence studies and ab initio calculations imply the presence of multiple cyclic isomers of OH(D2O)(3). (C) 2015 AIP Publishing LLC.
机译:含有单个羟基的小水团在液氦液滴中合成。 OH-H2O和OH(D2O)(n)团簇(n = 1-3)在羟基自由基OH拉伸振动附近用红外激光光谱法探测。实验频带的起源与全局最小结构的从头算起在质量上是一致的;但是,通过B3LYP和MP2方法,从孤立的OH产生的频移明显过高。解决电子角动量部分淬灭的有效哈密顿量用于分析OH-H2O和OH-D2O二元配合物的Stark光谱,揭示了3.70(5)D永久电偶极矩。当考虑大振幅振动平均时,偶极矩的计算与实验非常吻合。极化光谱法用于表征分配给OH(D2O)(2)的两个振动带,揭示了两个几乎等能量的环状异构体,它们的非氢键合氘原子相对于三个氧原子平面的取向不同。对于“上-上”和“上-下”结构,这些簇的偶极矩分别确定为大约2.5和1.8D。观察到包含三个或更多个D2O分子的较大簇的羟基拉伸带向分离的OH自由基的红色偏移了大约300 cm(-1)。压力依赖性研究和从头算计算表明存在OH(D2O)(3)的多个环状异构体。 (C)2015 AIP Publishing LLC。

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