Synthetic oligomers equipped with complementary H-bond donor and acceptor side chains form multiply H-bonded duplexes in organic solvents. Comparison of the duplex forming properties of four families of oligomers with different backbones shows that formation of an extended duplex with three or four inter-strand H-bonds is more challenging than formation of complexes that make only two H-bonds. The stabilities of 1 : 1 complexes formed between length complementary homo-oligomers equipped with either phosphine oxide or phenol recognition modules were measured in toluene. When the backbone is very flexible (pentane-1,5-diyl thioether), the stability increases uniformly by an order of magnitude for each additional base-pair added to the duplex:...
Oligomers equipped with complementary recognition units have the potential to encode and express che...
Oligomers equipped with complementary recognition units have the potential to encode and express che...
Nature has long inspired chemists to replicate the molecules produced by evolution. Arguably, the mo...
The formation of well-defined supramolecular assemblies involves competition between intermolecular ...
Complementary phenylacetylene oligomers equipped with phenol and phosphine oxide recognition sites f...
Linear oligomers equipped with complementary H-bond donor (D) and acceptor (A) sites can interact vi...
Oligomeric molecules equipped with complementary H-bond recognition sites form stable duplexes in no...
A new family of recognition-encoded oligomers that form stable duplexes in chloroform have been prep...
Oligomers equipped with a sequence of phenol and pyridine N-oxide groups form duplexes via H-bonding...
Complementary phenylacetylene oligomers equipped with phenol and phosphine oxide recognition sites f...
Linear oligomers equipped with complementary H-bond donor (D) and acceptor (A) sites can interact vi...
Competition from intramolecular folding is a major challenge in the design of synthetic oligomers th...
Oligomers equipped with a sequence of phenol and pyridine <i>N</i>-oxide groups form duplexes via H-...
Melamine oligomers composed of repeating triazine-piperidine units and equipped with phenol and phos...
One of the challenges in the realization of synthetic oligomers capable of sequence-selective duplex...
Oligomers equipped with complementary recognition units have the potential to encode and express che...
Oligomers equipped with complementary recognition units have the potential to encode and express che...
Nature has long inspired chemists to replicate the molecules produced by evolution. Arguably, the mo...
The formation of well-defined supramolecular assemblies involves competition between intermolecular ...
Complementary phenylacetylene oligomers equipped with phenol and phosphine oxide recognition sites f...
Linear oligomers equipped with complementary H-bond donor (D) and acceptor (A) sites can interact vi...
Oligomeric molecules equipped with complementary H-bond recognition sites form stable duplexes in no...
A new family of recognition-encoded oligomers that form stable duplexes in chloroform have been prep...
Oligomers equipped with a sequence of phenol and pyridine N-oxide groups form duplexes via H-bonding...
Complementary phenylacetylene oligomers equipped with phenol and phosphine oxide recognition sites f...
Linear oligomers equipped with complementary H-bond donor (D) and acceptor (A) sites can interact vi...
Competition from intramolecular folding is a major challenge in the design of synthetic oligomers th...
Oligomers equipped with a sequence of phenol and pyridine <i>N</i>-oxide groups form duplexes via H-...
Melamine oligomers composed of repeating triazine-piperidine units and equipped with phenol and phos...
One of the challenges in the realization of synthetic oligomers capable of sequence-selective duplex...
Oligomers equipped with complementary recognition units have the potential to encode and express che...
Oligomers equipped with complementary recognition units have the potential to encode and express che...
Nature has long inspired chemists to replicate the molecules produced by evolution. Arguably, the mo...