Higher-order structure in abiotic foldamer systems represents an important but largely unrealized goal. As one approach to this challenge, covalent assembly can be used to assemble macrocycles with foldamer subunits in well-defined spatial relationships. Such systems have previously been shown to exhibit self-sorting, new folding motifs, and dynamic stereoisomerism, yet there remain important questions about the interplay between folding and macrocyclization and the effect of structural confinement on folding behavior. Here, we explore the dynamic covalent assembly of extended ortho-phenylenes (hexamer and decamer) with rod-shaped linkers. Characteristic 1H chemical shift differences between cyclic and acyclic systems can be compared with c...
The folding and aggregation behavior of a pair of oligo(phenylene ethynylene) (OPE) foldamers are in...
Hexakis(<i>m</i>-phenylene ethynylene) (<i>m</i>-PE) macrocycles <b>1</b>–<b>4</b>, sharing the sam...
Control over the folding of oligomers, be it broad induction of a preferred helical handedness or su...
ConspectusIn nature, the folding of oligomers and polymers is used to generate complex three-dimensi...
The ortho-phenylenes are a simple class of foldamers, with the formation of helices driven by offset...
The <i>ortho</i>-phenylenes are a simple class of foldamers, with the formation of helices driven by...
<i>o</i>-Phenylene tetramers have been coassembled with linkers into macrocycles through imine conde...
The alkylation of some secondary amide functions with a dimethoxybenzyl (DMB) group in oligomers of ...
The <i>ortho</i>-phenylenes are a simple class of helical oligomers and representative of the broade...
The alkylation of some secondary amide functions with a dimethoxybenzyl (DMB) group in oligomers of ...
Self-assembly is a powerful method to obtain large discrete functional molecular architectures. When...
Foldamers have the potential to be the synthetic equivalent of Nature's macromolecules; man-made oli...
Dynamic foldamers are synthetic folded molecules which can change their conformation in response to ...
A Cu-catalyzed benzannulation reaction transforms ortho(arylene ethynylene) oligomers into ortho-ary...
The folding and aggregation behavior of a pair of oligo(phenylene ethynylene) (OPE) foldamers are in...
Hexakis(<i>m</i>-phenylene ethynylene) (<i>m</i>-PE) macrocycles <b>1</b>–<b>4</b>, sharing the sam...
Control over the folding of oligomers, be it broad induction of a preferred helical handedness or su...
ConspectusIn nature, the folding of oligomers and polymers is used to generate complex three-dimensi...
The ortho-phenylenes are a simple class of foldamers, with the formation of helices driven by offset...
The <i>ortho</i>-phenylenes are a simple class of foldamers, with the formation of helices driven by...
<i>o</i>-Phenylene tetramers have been coassembled with linkers into macrocycles through imine conde...
The alkylation of some secondary amide functions with a dimethoxybenzyl (DMB) group in oligomers of ...
The <i>ortho</i>-phenylenes are a simple class of helical oligomers and representative of the broade...
The alkylation of some secondary amide functions with a dimethoxybenzyl (DMB) group in oligomers of ...
Self-assembly is a powerful method to obtain large discrete functional molecular architectures. When...
Foldamers have the potential to be the synthetic equivalent of Nature's macromolecules; man-made oli...
Dynamic foldamers are synthetic folded molecules which can change their conformation in response to ...
A Cu-catalyzed benzannulation reaction transforms ortho(arylene ethynylene) oligomers into ortho-ary...
The folding and aggregation behavior of a pair of oligo(phenylene ethynylene) (OPE) foldamers are in...
Hexakis(<i>m</i>-phenylene ethynylene) (<i>m</i>-PE) macrocycles <b>1</b>–<b>4</b>, sharing the sam...
Control over the folding of oligomers, be it broad induction of a preferred helical handedness or su...