Programming the hierarchical self-assembly of small molecules has been a fundamental topic of great significance in biological systems and artificial supramolecular systems. Precise and highly programmed self-assembly can produce supramolecular architectures with distinct structural features. However, it still remains a challenge how to precisely control the self-assembly pathway in a desirable way by introducing abundant structural information into a limited molecular backbone. Here we disclose a strategy that directs the hierarchical self-assembly of sodium thioctate, a small molecule of biological origin, into a highly ordered supramolecular layered network. By combining the unique dynamic covalent ring-opening-polymerization of sodium t...
Many supramolecular motifs self-assemble into nanorods, forming the basis of the mechanical properti...
The spontaneous organization of building blocks into ordered structures governed by non-covalent int...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...
Programming the hierarchical self-assembly of small molecules has been a fundamental topic of great ...
Polymeric materials with integrated functionalities are required to match their ever-expanding pract...
Self-assembly relies on the ability of smaller and discrete entities to spontaneously arrange into m...
The self-assembly of a stimuli-responsive aqueous supramolecular hyperbranched polymer from small mo...
Since the serendipitous event that led to the first synthesis of a molecule by the hands of Man in 1...
Self-assembty of polymeric supramolecules is a powerful too[ for producing functional materials that...
Two structurally-similar discotic molecules able to self-assemble in water, forming supramolecular f...
Two structurally-similar discotic molecules able to self-assemble in water, forming supramolecular f...
Self-assembled supramolecular architectures are ubiquitous in nature. A synchronized combination of ...
Supramolecular materials–materials that exploit non-covalent interactions–are increasing in structur...
Many supramolecular motifs self-assemble into nanorods, forming the basis of the mechanical properti...
The spontaneous organization of building blocks into ordered structures governed by non-covalent int...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...
Programming the hierarchical self-assembly of small molecules has been a fundamental topic of great ...
Polymeric materials with integrated functionalities are required to match their ever-expanding pract...
Self-assembly relies on the ability of smaller and discrete entities to spontaneously arrange into m...
The self-assembly of a stimuli-responsive aqueous supramolecular hyperbranched polymer from small mo...
Since the serendipitous event that led to the first synthesis of a molecule by the hands of Man in 1...
Self-assembty of polymeric supramolecules is a powerful too[ for producing functional materials that...
Two structurally-similar discotic molecules able to self-assemble in water, forming supramolecular f...
Two structurally-similar discotic molecules able to self-assemble in water, forming supramolecular f...
Self-assembled supramolecular architectures are ubiquitous in nature. A synchronized combination of ...
Supramolecular materials–materials that exploit non-covalent interactions–are increasing in structur...
Many supramolecular motifs self-assemble into nanorods, forming the basis of the mechanical properti...
The spontaneous organization of building blocks into ordered structures governed by non-covalent int...
Directing self-assembly processes out-of-equilibrium to yield kinetically trapped materials with wel...