2017
DOI: 10.3390/polym9100494
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Block Copolymers: Synthesis, Self-Assembly, and Applications

Abstract: Abstract:Research on block copolymers (BCPs) has played a critical role in the development of polymer chemistry, with numerous pivotal contributions that have advanced our ability to prepare, characterize, theoretically model, and technologically exploit this class of materials in a myriad of ways in the fields of chemistry, physics, material sciences, and biological and medical sciences. The breathtaking progress has been driven by the advancement in experimental techniques enabling the synthesis and characte… Show more

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Cited by 325 publications
(250 citation statements)
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“…More details can be found in the specific literature on block-copolymer synthesis. 5 Popular hydrophilic blocks include PMOXA, PEG, PGMA, PAA and PIAT; examples for hydrophobic blocks comprise PDMS, PS, PMA, PB, PCL, PHPMA, or PNIPAM. The Tables 1 and 2 provide all polymers used for the preparation of the biohybrid compartments referenced in this review.…”
Section: Amphiphilic Block-copolymersmentioning
confidence: 99%
“…More details can be found in the specific literature on block-copolymer synthesis. 5 Popular hydrophilic blocks include PMOXA, PEG, PGMA, PAA and PIAT; examples for hydrophobic blocks comprise PDMS, PS, PMA, PB, PCL, PHPMA, or PNIPAM. The Tables 1 and 2 provide all polymers used for the preparation of the biohybrid compartments referenced in this review.…”
Section: Amphiphilic Block-copolymersmentioning
confidence: 99%
“…Various nano drug delivery systems such as liposomes, niosomes, nanocrystals, and polymeric micelles have been widely employed for improvement in solubility and ultimate therapeutic efficacy of the drugs. Polymeric micelles are a subject of recent scientific interest due to their solubilization potential, high stability, targeted, selective, and prolonged delivery of the loaded drugs in a systemic way . The ability of polymeric micelles to enhance the solubility of hydrophobic drugs originates from their unique core/shell architecture.…”
Section: Introductionmentioning
confidence: 99%
“…The propensity to mimic the complexity of biological systems has stimulated a focus on the study of synthetic polymers and their aqueous self-assembly. [2][3][4] Synthetic polypeptides, or polyaminoacids, are the class of polymers most closely related to biomacromolecules, consisting of the same building blocks as natural proteins yet keeping a high degree of structural versatility. These characteristics make polypeptides perfectly suitable for advanced drug delivery.…”
Section: Introductionmentioning
confidence: 99%