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The structures of fluorene-(H2O)(1,2) determined by rotational coherence spectroscopy

机译:旋转相干光谱法测定芴-(H2O)(1,2)的结构

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Rotational coherence spectroscopy (RCS), via time-correlated single photon counting, and two-color resonant two-photon ionization (R2PI) time-of-flight mass spectrometry, have been used to characterize fluorene-(water)(1,2) [FL-(H2O)(1,2)] van der Waals clusters generated in supersonic jets. Rotational coherence traces have been obtained at excitation energies corresponding to several resonant features in the S-1<--S-0 R2PI spectra of FL-(H2O)(1,2). RCS simulations and diagonalization of the moment of inertia tensor have been used to obtain S-1 excited state rotational constants and structures of FL-(H2O)(1,2) that are consistent with the experimental rotational coherence traces. The RCS results indicate that: (i) the water molecule in FL-H2O resides above the central five member ring and interacts with both aromatic sites; (ii) the water molecules in FL-(H2O)(2) form a water dimer that is most likely oriented along the long axis of fluorene and is hydrogen-bonded to both aromatic sites. The S-1<--S-0 R2PI spectra of FL-(D2O)(1,2) and FL-HDO have also been obtained. The 0(0)(0) transition is a doublet in the R2PI spectra of FL-H2O, FL-D2O, and a singlet in the R2PI spectrum of FL-HDO. The presence of this doublet in the FL-H2O/D2O spectra, and the absence of such a splitting in the FL-HDO spectrum, is an indication of internal rotation of the water molecule on a potential energy surface that changes upon electronic excitation. Lastly, the use of RCS and time-resolved fluorescence as a tool for assigning features in R2PI spectra that are of ambiguous origin due to fragmentation of higher mass clusters into lower mass channels is demonstrated. (C) 2003 American Institute of Physics. [References: 35]
机译:旋转相干光谱(RCS)通过时间相关的单光子计数和双色共振双光子电离(R2PI)飞行时间质谱法已用于表征芴-(水)(1,2) [FL-(H2O)(1,2)]在超音速射流中产生的范德华簇。在与FL-(H2O)(1,2)的S-1 <-S-0 R2PI光谱中的几个共振特征相对应的激发能下获得了旋转相干迹线。 RCS仿真和惯性矩张量的对角化已用于获得S-1激发态旋转常数和FL-(H2O)(1,2)的结构,与实验旋转相干迹线一致。 RCS结果表明:(i)FL-H2O中的水分子位于中心五元环上方,并与两个芳香位点相互作用; (ii)FL-(H2O)(2)中的水分子形成水二聚体,该二聚体最有可能沿芴的长轴取向并氢键合到两个芳香位点。还获得了FL-(D2O)(1,2)和FL-HDO的S-1 <-S-0 R2PI光谱。 0(0)(0)跃迁在FL-H2O,FL-D2O的R2PI光谱中是双峰,在FL-HDO的R2PI光谱中是单峰。 FL-H2O / D2O光谱中此双峰的存在以及FL-HDO光谱中不存在这种分裂,表明水分子在势能表面上的内部旋转随电子激发而改变。最后,展示了使用RCS和时间分辨荧光作为在R2PI光谱中分配特征的工具,这些特征由于较高质量的团簇破碎成较低质量的通道而起源不明确。 (C)2003美国物理研究所。 [参考:35]

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