Evolution can increase the complexity of matter by self-organization into helical architectures, the best example being the DNA double helix. One common aspect, apparently shared by most of these architectures, is the presence of covalent bonds within the helix backbone. Here, we report the unprecedented crystal structures of a metal complex that self-organizes into a continuous double helical structure, assembled by non-covalent building blocks. Built up solely by weak stacking interactions, this alternating tread stairs-like double helical assembly mimics the DNA double helix structure. Starting from a racemic mixture in aqueous solution, the ruthenium(II) polypyridyl complex forms two polymorphic structures of a left-handed double helica...
Herein, we report a hybrid polyoxometalate organic-inorganic compound, Na-2[(HGMP)(2)Mo5O15]center d...
We describe a crystal structure, at atomic resolution (1.1 Å, 100 K), of a ruthenium polypyridyl com...
The DNA double helix is a versatile building block used in DNA nanotechnology. To potentiate the dis...
Evolution can increase the complexity of matter by self-organization into helical architectures, the...
Helical structures are often found in nature, examples of which include deoxyribonucleic acid (DNA),...
Four heteroleptic ruthenium(II) complexes of 4′-functionalised 2,2′:6′,2′′-terpyridine are reported,...
Condensation of DNA helices into hexagonally packed bundles and toroids represents an intriguing exa...
The hierarchical organization strategy has realized elaborate supramolecular structures that are dif...
Coordination-driven self-assembly as a bottom-up approach has witnessed a rapid growth in building g...
Sophisticated helical structure has been an attractive subject due to its significance in understand...
A comparative structural study of eleven empty and eight filled hexanuclear metalloprismatic cages r...
The ubiquitous biomacromolecule DNA has an axial rigidity persistence length of ~50 nm, driven by it...
Condensation of DNA helices into hexagonally packed bundles and toroids represents an intriguing exa...
Although the supramolecular helical structures of biomacromolecules have been studied, the examples ...
International audienceGroove-backbone interaction is a natural and biologically relevant mechanism f...
Herein, we report a hybrid polyoxometalate organic-inorganic compound, Na-2[(HGMP)(2)Mo5O15]center d...
We describe a crystal structure, at atomic resolution (1.1 Å, 100 K), of a ruthenium polypyridyl com...
The DNA double helix is a versatile building block used in DNA nanotechnology. To potentiate the dis...
Evolution can increase the complexity of matter by self-organization into helical architectures, the...
Helical structures are often found in nature, examples of which include deoxyribonucleic acid (DNA),...
Four heteroleptic ruthenium(II) complexes of 4′-functionalised 2,2′:6′,2′′-terpyridine are reported,...
Condensation of DNA helices into hexagonally packed bundles and toroids represents an intriguing exa...
The hierarchical organization strategy has realized elaborate supramolecular structures that are dif...
Coordination-driven self-assembly as a bottom-up approach has witnessed a rapid growth in building g...
Sophisticated helical structure has been an attractive subject due to its significance in understand...
A comparative structural study of eleven empty and eight filled hexanuclear metalloprismatic cages r...
The ubiquitous biomacromolecule DNA has an axial rigidity persistence length of ~50 nm, driven by it...
Condensation of DNA helices into hexagonally packed bundles and toroids represents an intriguing exa...
Although the supramolecular helical structures of biomacromolecules have been studied, the examples ...
International audienceGroove-backbone interaction is a natural and biologically relevant mechanism f...
Herein, we report a hybrid polyoxometalate organic-inorganic compound, Na-2[(HGMP)(2)Mo5O15]center d...
We describe a crystal structure, at atomic resolution (1.1 Å, 100 K), of a ruthenium polypyridyl com...
The DNA double helix is a versatile building block used in DNA nanotechnology. To potentiate the dis...