A current objective in supramolecular chemistry is to mimic the transitions between complex self‐sorted systems that represent a hallmark of regulatory function in nature. In this work, a self‐sorting network, comprising linear hydrogen motifs, was created. Selecting six hydrogen‐bonding motifs capable of both high‐fidelity and promiscuous molecular recognition gave rise to a complex self‐sorting system, which included motifs capable of both narcissistic and social self‐sorting. Examination of the interactions between individual components, experimentally and computationally, provided a rationale for the product distribution during each phase of a cascade. This reasoning holds through up to five sequential additions of six building blocks, ...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...
A current objective in supramolecular chemistry is to mimic the transitions between complex self‐sor...
A current objective in supramolecular chemistry is to mimic the transitions between complex self-sor...
A series of hydrogen-bonding motifs are shown to be capable of both high-fidelity and promiscuous mo...
A self‐sorting network comprising six different hydrogen bonding‐motifs is presented. Detailed analy...
Hydrogen bonding is one of the most useful of the non-covalent interactions. Highly directional and ...
Hydrogen bonding is one of the most useful of the non-covalent interactions. Highly directional and ...
Hydrogen bonding is one of the most useful of the non-covalent interactions. Highly directional and ...
Biology can achieve phenomenal information storage/processing capabilities from just four hydrogen b...
Hydrogen bonding is one of the most useful of the non-covalent interactions. Highly directional and ...
A stimuli responsive linear hydrogen bonding motif, capable of in situ protonation and deprotonation...
Large protein-sized synthetic supramolecular architecture is rare and certainly has not yet achieved...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...
A current objective in supramolecular chemistry is to mimic the transitions between complex self‐sor...
A current objective in supramolecular chemistry is to mimic the transitions between complex self-sor...
A series of hydrogen-bonding motifs are shown to be capable of both high-fidelity and promiscuous mo...
A self‐sorting network comprising six different hydrogen bonding‐motifs is presented. Detailed analy...
Hydrogen bonding is one of the most useful of the non-covalent interactions. Highly directional and ...
Hydrogen bonding is one of the most useful of the non-covalent interactions. Highly directional and ...
Hydrogen bonding is one of the most useful of the non-covalent interactions. Highly directional and ...
Biology can achieve phenomenal information storage/processing capabilities from just four hydrogen b...
Hydrogen bonding is one of the most useful of the non-covalent interactions. Highly directional and ...
A stimuli responsive linear hydrogen bonding motif, capable of in situ protonation and deprotonation...
Large protein-sized synthetic supramolecular architecture is rare and certainly has not yet achieved...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...
Self-assembly by intermolecular non-covalent interactions directed by self-recognition created the f...