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Experimental support for the dominance of van der Waals dispersion forces in aromatic stacking interactions occurring in organic solution is surprisingly limited. The size‐dependence of aromatic stacking in an organic solvent was examined. The interaction energy was found to vary by about 7.5 kJ mol−1 on going from a phenyl–phenyl to an anthracene–pyrene stack. Strikingly, the experimental data were highly correlated with dispersion energies determined using symmetry‐adapted perturbation theory (SAPT), while the induction, exchange, electrostatic, and solvation energy components correlated poorly. Both the experimental data and the SAPT‐dispersion energies gave high‐quality correlations with the change in solvent accessible area upon complexation. Thus, the size‐dependence of aromatic stacking interactions is consistent with the dominance of van der Waals dispersion forces even in the presence of a competing polarizable solvent.  相似文献   

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《Chemie in Unserer Zeit》2017,51(6):372-383
Supramolecular Chemistry developed into a highly dynamic and innovative research discipline since having been awarded with the Nobel prize 30 years ago. After introducing the three winners of the Nobel prize and their work this article describes a selection of scientific topics to which Supramolecular Chemistry contributes today. Particular focus lies on systems and concepts that found entry in practical applications. It should thus be shown that Supramolecular Chemistry made a significant impact on chemical research during the last three decades and even laid the foundation for whole new research directions.  相似文献   

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