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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Competition between hydrogen bonding and dispersion interactions in the indole?pyridine dimer and (indole)2?pyridine trimer studied in a supersonic jet
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Competition between hydrogen bonding and dispersion interactions in the indole?pyridine dimer and (indole)2?pyridine trimer studied in a supersonic jet

机译:在超声速射流中研究吲哚·吡啶二聚体和(吲哚)2·吡啶三聚体中氢键和分散体相互作用之间的竞争

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摘要

Structures of the indole?pyridine dimer and (indole) _2?pyridine trimer have been investigated in a supersonic jet using resonant two-photon ionization (R2PI) and IR-UV double resonance spectroscopic techniques combined with quantum chemistry calculations. R2PI spectra of the dimer and the trimer recorded by electronic excitation of the indole moiety show that the red-shift in the band origin of the dimer with respect to the 000 band of the monomer is larger compared to that of the trimer. The presence of only one conformer in the case of both the dimer and the trimer has been confirmed from IR-UV hole-burning spectroscopy. The structures of the dimer and the trimer have been determined from resonant ion dip infrared (RIDIR) spectra combined with ab initio as well as DFT/M05-2X and DFT/M06-2X calculations. It has been found that the dimer, observed in the experiment, has a V-shaped geometry stabilized by N-H?N and C-H?N hydrogen bonding interactions, as well as C-H?π and π?π dispersion interactions. The geometry of the trimer has been found to be a cyclic one stabilized by N-H?N, N-H?π, C-H?π, and C-H?N interactions. The most important finding of this current study is the observation of the mixed dimer and trimer, which are stabilized by hydrogen bonding as well as dispersion interactions.
机译:使用共振双光子电离(R2PI)和IR-UV双共振光谱技术结合量子化学计算,在超音速喷气机中研究了吲哚-吡啶二聚体和(吲哚)_2-吡啶三聚体的结构。通过吲哚部分的电子激发记录的二聚体和三聚体的R2PI光谱显示,相对于三聚体,二聚体的带状起源相对于单体的000带的红移更大。从二聚体和三聚体的情况来看,仅一种构象体的存在已通过IR-UV空穴燃烧光谱法确认。二聚体和三聚体的结构已根据共振离子浸没红外(RIDIR)光谱与从头算以及DFT / M05-2X和DFT / M06-2X计算确定。已经发现,在实验中观察到的二聚体具有通过N-H→N和C-H→N氢键相互作用以及C-H→π和π→π分散相互作用而稳定的V形几何形状。已经发现三聚体的几何形状是由N-H 2 N,N-H 2π,C-H 2π和C-H 2 N相互作用稳定的环状。这项最新研究的最重要发现是观察到了混合的二聚体和三聚体,它们通过氢键以及分散体相互作用而得以稳定。

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