The ubiquitous biomacromolecule DNA has an axial rigidity persistence length of ~50 nm, driven by its elegant double helical structure. While double and multiple helix structures appear widely in nature, only rarely are these found in synthetic non-chiral macromolecules. Here we report a double helical conformation in the densely charged aromatic polyamide poly(2,2′-disulfonyl-4,4′-benzidine terephthalamide) or PBDT. This double helix macromolecule represents one of the most rigid simple molecular structures known, exhibiting an extremely high axial persistence length (~1 micrometer). We present X-ray diffraction, NMR spectroscopy, and molecular dynamics (MD) simulations that reveal and confirm the double helical conformation. The discovery...
This paper analyzes the elastic equilibrium conformations of duplex DNA constrained by the constancy...
[[abstract]]Helical structures are probably the most fascinating morphologies in nature, and they ha...
Polymers and their elementary subunits, called monomers, come in an immense variety of structures an...
The ubiquitous biomacromolecule DNA has an axial rigidity persistence length of similar to 50 nm, dr...
The molecular structure of the DNA double helix has been known for 60 years, but we remain surprisin...
Helical structures play a vital role in nature, offering mechanical rigidity, chirality and structur...
Condensation of DNA helices into hexagonally packed bundles and toroids represents an intriguing exa...
Condensation of DNA helices into hexagonally packed bundles and toroids represents an intriguing exa...
Evolution can increase the complexity of matter by self-organization into helical architectures, the...
Supramolecular fibers in water, micrometers long and several nanometers in width, are among the most...
Crossover motifs are integral components for designing DNA-based nanostructures and nanomechanical d...
<div><p>In this article, we investigate the principal structural features of the DNA double helix an...
Crossover motifs are integral components for designing DNA-based nanostructures and nanomechanical d...
In this article, we investigate the principal structural features of the DNA double helix and their ...
AbstractCrossover motifs are integral components for designing DNA-based nanostructures and nanomech...
This paper analyzes the elastic equilibrium conformations of duplex DNA constrained by the constancy...
[[abstract]]Helical structures are probably the most fascinating morphologies in nature, and they ha...
Polymers and their elementary subunits, called monomers, come in an immense variety of structures an...
The ubiquitous biomacromolecule DNA has an axial rigidity persistence length of similar to 50 nm, dr...
The molecular structure of the DNA double helix has been known for 60 years, but we remain surprisin...
Helical structures play a vital role in nature, offering mechanical rigidity, chirality and structur...
Condensation of DNA helices into hexagonally packed bundles and toroids represents an intriguing exa...
Condensation of DNA helices into hexagonally packed bundles and toroids represents an intriguing exa...
Evolution can increase the complexity of matter by self-organization into helical architectures, the...
Supramolecular fibers in water, micrometers long and several nanometers in width, are among the most...
Crossover motifs are integral components for designing DNA-based nanostructures and nanomechanical d...
<div><p>In this article, we investigate the principal structural features of the DNA double helix an...
Crossover motifs are integral components for designing DNA-based nanostructures and nanomechanical d...
In this article, we investigate the principal structural features of the DNA double helix and their ...
AbstractCrossover motifs are integral components for designing DNA-based nanostructures and nanomech...
This paper analyzes the elastic equilibrium conformations of duplex DNA constrained by the constancy...
[[abstract]]Helical structures are probably the most fascinating morphologies in nature, and they ha...
Polymers and their elementary subunits, called monomers, come in an immense variety of structures an...