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首页> 外文期刊>The Journal of Chemical Physics >Anisole-(H_2O)_n (n=1-3) complexes: An experimental and theioretical investigation of the modulation of optimal structures, binding energies, and vibrational spectra in both the ground and first excited states
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Anisole-(H_2O)_n (n=1-3) complexes: An experimental and theioretical investigation of the modulation of optimal structures, binding energies, and vibrational spectra in both the ground and first excited states

机译:苯甲醚-(H_2O)_n(n = 1-3)配合物:在基态和初激发态下对最佳结构,结合能和振动谱的调制的实验和理论研究

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We present the results obtained from spectroscopic investigations and quantum chemical calculations oif the interaction of anisole (methoxybenzene) with small water clusters. The experiments have ben carried out using resonant two-photon ionization (R2PI) and IR-UV double-resonance vibrational spectroscopy (IR/R2PI) in the region of the OH stretches. Apart from the vibrational spectra of the water moiety in the clusters, their intermolecular vibrations in the electronically excited S_1 state are identified by IR/R2PI hole burning spectroscopy and assigned according to the vibrations calculated for the S_1 state and compared with the vibrations calculated for the S_0 state. The calculations for the S_0 state were carried out at the second order Moller-Plesset level of theory using obth the 6-31+G~* and aug-cc-pVDZ basis sets and for the S_1 state at eh configuration interaction singles (CIS) level with the 6-31+G~* basis set. In the electronic ground state (S_0), the interaction of a water monomer to anisole is mediated through its oxygen atom, and that of a water dimer both through the oxygen atom (sigma type of interaction) and the arene ring (pi type of interaction). Thus in contrast to the interaction of fluorinated benzenes with water clusters, wherein a conformational transition from an in-plane sigma to a on-top pi bonding emerges starting with a water trimer, this conformational transition appears in case of anisole already with a water dimer. In the excited state (S_1) of the investigated systems, there is a pronounced weakening of the interaction of the water cluster wiht the aromatic chromophore, which is also responsible for te blue shift of the electronic transitions. Consequently, the structures of the complexes of anisole wiht a water monomer or dimer are very different in both states. The weakening results from a diminished electron density of the oxygen atom and of the pi system of anisole in the excited state. The calculated binding energies of the ground-state conformers indicate that these small water clusters are bound more strongly to anisole than to other pi systems like benzene, toluene, fluorobenzene, and p-difluorobenzene. The many-body decomposition of the binding energy (S_0) reveals that a progressive increase+ in the size of the water clusters results in a weakening of the sigma OH interaction and a concurrent strengthening of the pi-H interaction. The complex containing a cyclic water trimer exhibits in the excited state also a pi-type H-bonding interaction, but its stability emerges from a delocalization of the electron density from the water trimer to the anisole oxygen. Excepting the water dimer complexes, there is a good agreement between the calculated OH vibrational frequencies and the experimental IR spectra recorded for the ground state. The surprisingly good agreement of the calculated and the experimentally observed intermolecular modes in the excited state of these complexes provides convincing evidence that the experimental spectra emerge from structures similr to those predicted at the CIS/6-31+G~* level.
机译:我们介绍从光谱学研究和量子化学计算获得的结果,如果苯甲醚(甲氧基苯)与小的水团簇发生相互作用。已经在OH延伸区域中使用共振双光子电离(R2PI)和IR-UV双共振振动光谱法(IR / R2PI)进行了实验。除了簇中水部分的振动光谱外,它们在电子激发S_1状态下的分子间振动还通过IR / R2PI空穴燃烧光谱法进行识别,并根据针对S_1状态计算的振动进行分配,并与针对S_1状态计算的振动进行比较。 S_0状态。使用6-31 + G〜*和aug-cc-pVDZ基集在二阶Moller-Plesset理论水平上对S_0状态进行计算,对于eh配置相互作用单(CIS)下的S_1状态进行计算。级别为6-31 + G〜*。在电子基态(S_0)中,水单体与苯甲醚的相互作用是通过其氧原子介导的,水二聚体的相互作用是通过氧原子(σ型的相互作用)和芳烃环(pi型的相互作用)介导的)。因此,与氟化苯与水簇的相互作用相反,其中从平面三聚体到水上pi键的构象转变始于水三聚体,而苯甲醚已经与水二聚体一起出现,这种构象转变出现。在研究系统的激发态(S_1)中,水团簇与芳香族发色团的相互作用明显减弱,这也导致电子跃迁发生蓝移。因此,在两种状态下,具有水单体或二聚体的苯甲醚配合物的结构都非常不同。这种减弱是由于处于激发态的氧原子和苯甲醚的pi系统的电子密度降低。计算得出的基态构象异构体的结合能表明,与苯,甲苯,氟苯和对二氟苯等其他pi系统相比,这些小的水簇与茴香醚的结合力更强。结合能(S_0)的多体分解表明,水簇大小的逐渐增加+导致σOH相互作用减弱,同时pi-H相互作用增强。含有环状水三聚体的配合物在激发态下也表现出pi型H键相互作用,但其稳定性来自于电子密度从水三聚体向苯甲醚氧的离域化。除了水二聚体配合物外,在计算的OH振动频率与记录的基态实验IR光谱之间有很好的一致性。在这些配合物的激发态下,计算得出的和实验观察到的分子间模式的惊人的良好一致性提供了令人信服的证据,表明实验光谱从类似于CIS / 6-31 + G〜*水平预测的结构出现。

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