The current thesis provides an in-depth analytic study of a class of complex macromolecular architectures, i.e., single chain nanoparticles (SCNPs). Several advanced and modern characterization methods with orthogonal physicochemical operating principles are fused to examine the folding process of polymer chains and the resulting SCNPs, driven via simple and effective chemical transformations. In doing so, the thesis introduces powerful coupled analytical avenues towards SCNPs structure elucidation that will inform their effective design for catalytic applications
In this article we further investigate our recently devised method for folding polymer chains into n...
One of the most powerful capabilities of nature is specific catalysis of chemical reactions by enzym...
In this article we further investigate our recently devised method for folding polymer chains into n...
This article belongs to the Special Issue Single-Chain Polymer Nanotechnology.The folding of certain...
Over the last 100 years polymer chemistry has flourished in all areas and enabled control over synth...
Over the last 100 years polymer chemistry has flourished in all areas and enabled control over synth...
Over the last 100 years polymer chemistry has flourished in all areas and enabled control over synth...
The present feature article highlights the preparation of polymeric nanoparticles and initial attemp...
The present feature article highlights the preparation of polymeric nanoparticles and initial attemp...
The present feature article highlights the preparation of polymeric nanoparticles and initial attemp...
The present feature article highlights the preparation of polymeric nanoparticles and initial attemp...
Free to read on publisher website The current contribution serves as a critical update to a previous...
Free to read on publisher website The current contribution serves as a critical update to a previous...
Free to read on publisher website The current contribution serves as a critical update to a previous...
Nature has unparalleled control over the conformation and dynamics of its folded macromolecular stru...
In this article we further investigate our recently devised method for folding polymer chains into n...
One of the most powerful capabilities of nature is specific catalysis of chemical reactions by enzym...
In this article we further investigate our recently devised method for folding polymer chains into n...
This article belongs to the Special Issue Single-Chain Polymer Nanotechnology.The folding of certain...
Over the last 100 years polymer chemistry has flourished in all areas and enabled control over synth...
Over the last 100 years polymer chemistry has flourished in all areas and enabled control over synth...
Over the last 100 years polymer chemistry has flourished in all areas and enabled control over synth...
The present feature article highlights the preparation of polymeric nanoparticles and initial attemp...
The present feature article highlights the preparation of polymeric nanoparticles and initial attemp...
The present feature article highlights the preparation of polymeric nanoparticles and initial attemp...
The present feature article highlights the preparation of polymeric nanoparticles and initial attemp...
Free to read on publisher website The current contribution serves as a critical update to a previous...
Free to read on publisher website The current contribution serves as a critical update to a previous...
Free to read on publisher website The current contribution serves as a critical update to a previous...
Nature has unparalleled control over the conformation and dynamics of its folded macromolecular stru...
In this article we further investigate our recently devised method for folding polymer chains into n...
One of the most powerful capabilities of nature is specific catalysis of chemical reactions by enzym...
In this article we further investigate our recently devised method for folding polymer chains into n...