Over the last 100 years polymer chemistry has flourished in all areas and enabled control over synthetic polymer architectures – including chain lengths, dispersity and monomer sequences. Compared to the architectures of biomacromolecules, these scientific achievements mainly took place on the level of primary structures. The plethora of functions carried out by proteins in nature, however, does not only result from their primary structure, but from ist folding into perfectly defined 3D structures. Striving towards a similar architectural control and function in synthetic polymers, the field of single chain nanoparticles (SCNPs) emerged. In this review, we analyze the state of the art and identify what is currently standing between polymer ...
[EN]: In the Nanotechnology era, many methods for synthesis of materials with welldefined nanoscale ...
The specific activity of proteins can be traced back to their highly defined tertiary structure, whi...
Polymer science is rapidly advancing towards the precision-construction of synthetic macromolecules ...
Over the last 100 years polymer chemistry has flourished in all areas and enabled control over synth...
Nature has unparalleled control over the conformation and dynamics of its folded macromolecular stru...
The concept is simple: to build functional nanomaterials in the protein size regime (i.e. 2-5 nanome...
The specific activity of proteins can be traced back to their highly defined tertiary structure, whi...
Precision polymerization techniques offer the exciting opportunity to manufacture single-chain nanop...
The current thesis provides an in-depth analytic study of a class of complex macromolecular architec...
The folding of proteins into functional nanoparticles with defined 3D structures has inspired chemis...
Finding sustainable ways to create complex, sequence-defined polymers is essential for future advanc...
Polymeric nanoparticles have been utilized in an increasing number of fields over the past two decad...
Single-chain polymeric nanoparticles are artificial folded soft nano-objects of ultra-small size whi...
Free to read on publisher website The current contribution serves as a critical update to a previous...
The emulation of natural processes and the design of chemical reaction sequences inspired by nature ...
[EN]: In the Nanotechnology era, many methods for synthesis of materials with welldefined nanoscale ...
The specific activity of proteins can be traced back to their highly defined tertiary structure, whi...
Polymer science is rapidly advancing towards the precision-construction of synthetic macromolecules ...
Over the last 100 years polymer chemistry has flourished in all areas and enabled control over synth...
Nature has unparalleled control over the conformation and dynamics of its folded macromolecular stru...
The concept is simple: to build functional nanomaterials in the protein size regime (i.e. 2-5 nanome...
The specific activity of proteins can be traced back to their highly defined tertiary structure, whi...
Precision polymerization techniques offer the exciting opportunity to manufacture single-chain nanop...
The current thesis provides an in-depth analytic study of a class of complex macromolecular architec...
The folding of proteins into functional nanoparticles with defined 3D structures has inspired chemis...
Finding sustainable ways to create complex, sequence-defined polymers is essential for future advanc...
Polymeric nanoparticles have been utilized in an increasing number of fields over the past two decad...
Single-chain polymeric nanoparticles are artificial folded soft nano-objects of ultra-small size whi...
Free to read on publisher website The current contribution serves as a critical update to a previous...
The emulation of natural processes and the design of chemical reaction sequences inspired by nature ...
[EN]: In the Nanotechnology era, many methods for synthesis of materials with welldefined nanoscale ...
The specific activity of proteins can be traced back to their highly defined tertiary structure, whi...
Polymer science is rapidly advancing towards the precision-construction of synthetic macromolecules ...