Dynamics of guest molecules in PHTP inclusion compounds as probed by solid-state NMR and fluorescence spectroscopy

化学 分子内力 光谱学 分子 核磁共振波谱 戒指(化学) 荧光光谱法 荧光 化学物理 振幅 分子物理学 计算化学 结晶学 原子物理学 立体化学 物理 量子力学 有机化学
作者
Gokulakrishnan Srinivasan,Jorge A. Villanueva‐Garibay,Klaus Müller,D. Oelkrug,Begoña Milián‐Medina,David Beljonne,Jérôme Cornil,M. Wykes,Lucas Viani,Johannes Gierschner,Roberto Martínez‐Álvarez,Mikaël Jazdzyk,M. Hanack,Hans‐Joachim Egelhaaf
出处
期刊:Physical Chemistry Chemical Physics [The Royal Society of Chemistry]
卷期号:11 (25): 4996-4996 被引量:22
标识
DOI:10.1039/b820604j
摘要

Partially deuterated 1,4-distyrylbenzene () is included into the pseudohexagonal nanochannels of perhydrotriphenylene (PHTP). The overall and intramolecular mobility of is investigated over a wide temperature range by (13)C, (2)H NMR as well as fluorescence spectroscopy. Simulations of the (2)H NMR spectral shapes reveal an overall wobble motion of in the channels with an amplitude of about 4 degrees at T = 220 K and 10 degrees at T = 410 K. Above T = 320 K the wobble motion is superimposed by localized 180 degrees flips of the terminal phenyl rings with a frequency of 10(6) Hz at T = 340 K. The activation energies of both types of motions are around 40 kJ mol(-1) which imply a strong sterical hindrance by the surrounding PHTP channels. The experimental vibrational structure of the fluorescence excitation spectra of is analyzed in terms of small amplitude ring torsional motions, which provide information about the spatial constraints on by the surrounding PHTP host matrix. Combining the results from NMR and fluorescence spectroscopy as well as of time-dependent density functional calculations yields the complete potential surfaces of the phenyl ring torsions. These results, which suggest that intramolecular mobility of is only reduced but not completely suppressed by the matrix, are corroborated by MD simulations. Unrealistically high potential barriers for phenyl ring flips are obtained from MD simulations using rigid PHTP matrices which demonstrate the importance of large amplitude motions of the PHTP host lattice for the mobility of the guest molecules.

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