Polymerization rate difference of N-alkyl glycine NCAs: Steric hindrance or not?

Biopolymers. 2019 Apr;110(4):e23261. doi: 10.1002/bip.23261. Epub 2019 Feb 12.

Abstract

Polypeptoids synthesized from N-substituted glycine N-carboxyanhydrides (NNCAs) are widely applied in biological fields. The effect of side groups in NNCA polymerizations is a key to develop novel polypeptoids with complex topologies and constituents. In this work, density functional theory (DFT) calculations are employed to investigate the propagation of a series of alkyl substituted NNCAs with solvation model. According to both computational and experimental results, carbonyl addition is confirmed as rate determining step and steric hindrance is recognized as the major factor of low reactivity in β-C branched NNCAs. However, in linear and γ-C branched case, aggregation of side groups instead of bulkiness is considered responsible for low polymerization rate.

Keywords: density functional theory; normal amine mechanism; reaction activity; ring opening polymerization.

MeSH terms

  • Anhydrides / chemistry*
  • Density Functional Theory
  • Glycine / chemistry
  • Peptoids / chemical synthesis
  • Peptoids / chemistry*
  • Polymerization
  • Thermodynamics

Substances

  • Anhydrides
  • Peptoids
  • Glycine