The research field of supramolecular polymerization has dramatically progressed in the last three decades, and much deeper insights into its new mechanisms, including kinetic and thermodynamic aspects, have become available. Furthermore, a much wider variety of noncovalent interactions have been exploited for connecting monomers, and the importance of multivalency and the concept of pathway complexity have also been recognized. To control supramolecular polymerization, chain-growth supramolecular polymerization, seeded supramolecular polymerization, and sequence-specific supramolecular copolymerization, which are essential for precise macromolecular synthesis, are now possible. The stereochemical aspects of supramolecular polymerization usi...
Supramolecular polymers can be random and entangled coils with the mechanical properties of plastics...
The significant contribution of conventional living polymerization to polymer science assures that l...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...
The research field of supramolecular polymerization has dramatically progressed in the last three de...
\u3cp\u3eLiving large: Rational design of self-assembly pathways has been demonstrated in supramolec...
Since the first polymers were discovered, scientists have debated their structures. Before Hermann S...
This chapter details the exploitation of biocatalysis in generating supramolecular polymers. This ap...
Supramolecular copolymers are an emerging class of materials, and in the last years their potential ...
Here, we report an anomalous pathway complexity in the supramolecular polymerization of a chiral mon...
© 2013 Dr. Jing Ming RenThe properties and functions of polymeric materials are not only dictated by...
Self-assembly is an abundant process in nature and is vital to many processes in livin...
Seeded supramolecular polymerization (SSP) is a method that enables the controlled synthesis of supr...
Supramolecular polymers can be random and entangled coils with the mechanical properties of plastics...
The significant contribution of conventional living polymerization to polymer science assures that l...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...
The research field of supramolecular polymerization has dramatically progressed in the last three de...
\u3cp\u3eLiving large: Rational design of self-assembly pathways has been demonstrated in supramolec...
Since the first polymers were discovered, scientists have debated their structures. Before Hermann S...
This chapter details the exploitation of biocatalysis in generating supramolecular polymers. This ap...
Supramolecular copolymers are an emerging class of materials, and in the last years their potential ...
Here, we report an anomalous pathway complexity in the supramolecular polymerization of a chiral mon...
© 2013 Dr. Jing Ming RenThe properties and functions of polymeric materials are not only dictated by...
Self-assembly is an abundant process in nature and is vital to many processes in livin...
Seeded supramolecular polymerization (SSP) is a method that enables the controlled synthesis of supr...
Supramolecular polymers can be random and entangled coils with the mechanical properties of plastics...
The significant contribution of conventional living polymerization to polymer science assures that l...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...