A comparison of RAFT and ATRP methods for controlled radical polymerization
Reversible addition–fragmentation chain-transfer (RAFT) polymerization and atom transfer
radical polymerization (ATRP) are the two most common controlled radical polymerization …
radical polymerization (ATRP) are the two most common controlled radical polymerization …
Reversible-deactivation radical polymerization (Controlled/living radical polymerization): From discovery to materials design and applications
Reversible-deactivation radical polymerization (RDRP) processes, such as atom transfer
radical polymerization (ATRP), reversible addition-fragmentation chain transfer (RAFT) …
radical polymerization (ATRP), reversible addition-fragmentation chain transfer (RAFT) …
[HTML][HTML] Recent developments and future challenges in controlled radical polymerization: a 2020 update
This perspective summarizes the latest exciting developments in controlled radical
polymerization during the last decade (2010–2020). Our focus is to critically highlight …
polymerization during the last decade (2010–2020). Our focus is to critically highlight …
50th Anniversary Perspective: Block PolymersPure Potential
Block polymers have undergone extraordinary evolution since their inception more than 60
years ago, maturing from simple surfactants to an expansive class of macromolecules …
years ago, maturing from simple surfactants to an expansive class of macromolecules …
Bioactive synthetic polymers
Synthetic polymers are omnipresent in society as textiles and packaging materials, in
construction and medicine, among many other important applications. Alternatively, natural …
construction and medicine, among many other important applications. Alternatively, natural …
50th Anniversary Perspective: Living PolymerizationEmphasizing the Molecule in Macromolecules
RB Grubbs, RH Grubbs - Macromolecules, 2017 - ACS Publications
The ideal of living polymerization has defined research in polymer chemistry over the past
50 years. In this Perspective, we present the case that this concept has enabled the …
50 years. In this Perspective, we present the case that this concept has enabled the …
Engineering precise sequence-defined polymers for advanced functions
Unlike natural macromolecules (eg, nucleic acids and proteins) possessing precisely
defined molar mass, chain sequence, chirality, and topology, synthetic polymers are typically …
defined molar mass, chain sequence, chirality, and topology, synthetic polymers are typically …
Sequence-and stereo-defined macromolecules: properties and emerging functionalities
R Szweda - Progress in Polymer Science, 2023 - Elsevier
Natural macromolecules, such as proteins and nucleic acids, display various complex
functionalities in biological systems. These functionalities depend on the macromolecular …
functionalities in biological systems. These functionalities depend on the macromolecular …
Applications of discrete synthetic macromolecules in life and materials science: recent and future trends
In the last decade, the field of sequence‐defined polymers and related ultraprecise,
monodisperse synthetic macromolecules has grown exponentially. In the early stage, mainly …
monodisperse synthetic macromolecules has grown exponentially. In the early stage, mainly …
Properties and applications of precision oligomer materials; where organic and polymer chemistry join forces
B van Genabeek, BAG Lamers… - Journal of Polymer …, 2021 - Wiley Online Library
Precise oligomeric materials constitute a growing area of research with implications for
various applications as well as fundamental studies. Notably, this field of science which can …
various applications as well as fundamental studies. Notably, this field of science which can …