The hydrogen bond-based resorcin[4]arene hexamer finds application in the research area of supramolecular acid catalysis due to its intrinsic acidity and its ability to stabilize cationic transition states. This dissertation describes the use of the resorcin[4]arene hexamer in intramolecular hydroalkoxylations and cyclodehydration-rearrangement cascade reactions of hydroxy olefins. Furthermore, different ways to modulate the catalytic activity of the system are presented. In addition, a synthetic route towards novel derivatives of the resorcin[4]arene monomer is described.
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The hydrogen bond-based resorcin[4]arene hexamer finds application in the research area of supramolecular acid catalysis due to its intrinsic acidity and its ability to stabilize cationic transition states. This dissertation describes the use of the resorcin[4]arene hexamer in intramolecular hydroalkoxylations and cyclodehydration-rearrangement cascade reactions of hydroxy olefins. Furthermore, different ways to modulate the catalytic activity of the system are presented. In addition, a syntheti...
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