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  • Schlaad, Helmut (4) (remove)

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  • 2016 (4) (remove)

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  • Postprint (3)
  • Article (1)

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  • acids (2)
  • activated urethane derivatives (2)
  • carboxyanhydrides (2)
  • copolymers (2)
  • phosgene-free synthesis (2)
  • polypeptides (2)
  • ring-opening polymerization (2)

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Metathesis polymerization of cystine-based macrocycles (2016)
Behrendt, Felix Nicolas ; Schlaad, Helmut
Macrocycles based on L-cystine were synthesized by ring-closing metathesis (RCM) and subsequently polymerized by entropy-driven ring-opening metathesis polymerization (ED-ROMP). Monomer conversion reached ∼80% in equilibrium and the produced poly(ester-amine-disulfide-alkene)s exhibited apparent molar masses (Mappw) of up to 80 kDa and dispersities (Đ) of ∼2. The polymers can be further functionalized with acid anhydrides and degraded by reductive cleavage of the main-chain disulfide.
Synthesis of polysarcosine from air and moisture stable N-phenoxycarbonyl-N-methylglycine assisted by tertiary amine base (2016)
Doriti, Afroditi ; Brosnan, Sarah M. ; Weidner, Steffen M. ; Schlaad, Helmut
Polysarcosine (Mn = 3650–20 000 g mol−1, Đ ∼ 1.1) was synthesized from the air and moisture stable N-phenoxycarbonyl-N-methylglycine. Polymerization was achieved by in situ transformation of the urethane precursor into the corresponding N-methylglycine-N-carboxyanhydride, when in the presence of a non-nucleophilic tertiary amine base and a primary amine initiator.
Synthesis of polysarcosine from air and moisture stable N-phenoxycarbonyl-N-methylglycine assisted by tertiary amine base (2016)
Doriti, Afroditi ; Brosnan, Sarah M. ; Weidner, Steffen M. ; Schlaad, Helmut
Polysarcosine (Mn = 3650–20 000 g mol−1, Đ ∼ 1.1) was synthesized from the air and moisture stable N-phenoxycarbonyl-N-methylglycine. Polymerization was achieved by in situ transformation of the urethane precursor into the corresponding N-methylglycine-N-carboxyanhydride, when in the presence of a non-nucleophilic tertiary amine base and a primary amine initiator.
Thermoresponsive poly(2-oxazoline)s, polypeptoids, and polypeptides (2016)
Hoogenboom, Richard ; Schlaad, Helmut
This review covers the recent advances in the emerging field of thermoresponsive polyamides or polymeric amides, i.e., poly(2-oxazoline)s, polypeptoids, and polypeptides, with a specific focus on structure–thermoresponsive property relationships, self-assembly, and applications.
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