Complex chemical systems, such as living biological matter, are highly organized structures based on discrete molecules in constant dynamic interactions. These natural materials can evolve and adapt to their environment. By contrast, man-made materials exhibit simpler properties. In this Review, we highlight that most of the necessary elements for the development of more complex synthetic matter are available today. Using modern strategies, such as controlled radical polymerizations, supramolecular polymerizations or stepwise synthesis, polymers with precisely controlled molecular structures can be synthesized. Moreover, such tailored polymers can be folded or self-assembled into defined nanoscale morphologies. These self-organized macromol...
Modern applications of polymers demand further elaboration of molecular-level structures as well as ...
Polymers are essential building blocks of both biological life and artificial everyday objects (Figu...
Dynamic and adaptive self-assembly systems are able to sense an external or internal (energy or matt...
Complex chemical systems, such as living biological matter, are highly organized structures based on...
The controlled assembly of synthetic polymer structures is now possible with an unprecedented range ...
Tremendous synthetic advances in the fields of organic and polymer chemistry have created new opport...
What started as a scientific challenge roughly 10 years ago has become a technological reality today...
Significant progress has been made in the field of living/controlled polymerizations over the past d...
Living creatures exists for an important part out of soft material, such as skin, organs and cells, ...
Polymers and their self-assembled structures constitute an essential part of life: Advances in synth...
Nanostructured amphiphilic block copolymers, graft copolymers, polymeric thermally responsive molecu...
Since the first polymers were discovered, scientists have debated their structures. Before Hermann S...
The second half of the 20th century has witnessed a productive interplay between chemistry and mater...
A grand challenge in materials chemistry is the synthesis of macromolecules and polymers with precis...
Polymer science is rapidly advancing towards the precise construction of synthetic macromolecules of...
Modern applications of polymers demand further elaboration of molecular-level structures as well as ...
Polymers are essential building blocks of both biological life and artificial everyday objects (Figu...
Dynamic and adaptive self-assembly systems are able to sense an external or internal (energy or matt...
Complex chemical systems, such as living biological matter, are highly organized structures based on...
The controlled assembly of synthetic polymer structures is now possible with an unprecedented range ...
Tremendous synthetic advances in the fields of organic and polymer chemistry have created new opport...
What started as a scientific challenge roughly 10 years ago has become a technological reality today...
Significant progress has been made in the field of living/controlled polymerizations over the past d...
Living creatures exists for an important part out of soft material, such as skin, organs and cells, ...
Polymers and their self-assembled structures constitute an essential part of life: Advances in synth...
Nanostructured amphiphilic block copolymers, graft copolymers, polymeric thermally responsive molecu...
Since the first polymers were discovered, scientists have debated their structures. Before Hermann S...
The second half of the 20th century has witnessed a productive interplay between chemistry and mater...
A grand challenge in materials chemistry is the synthesis of macromolecules and polymers with precis...
Polymer science is rapidly advancing towards the precise construction of synthetic macromolecules of...
Modern applications of polymers demand further elaboration of molecular-level structures as well as ...
Polymers are essential building blocks of both biological life and artificial everyday objects (Figu...
Dynamic and adaptive self-assembly systems are able to sense an external or internal (energy or matt...