Literature DB >> 35581756

Polymerizing Base Sensitive Cyclic Carbonates Using Acid Catalysis.

Daniel J Coady1, Hans W Horn1, Gavin O Jones1, Haritz Sardon1,2, Amanda C Engler1, Robert M Waymouth3, Julia E Rice1, Yi Yan Yang4, James L Hedrick1.   

Abstract

Organic acids were explored as a means to expand the library of cyclic carbonate monomers capable of undergoing controlled ring-opening polymerization. Various nitrogenous bases have proven incredibly adept at polymerizing cyclic carbonates; however, their use has largely precluded monomers with an acidic proton. Molecular modeling of acid catalysis provided new mechanistic insight, wherein a bifunctional activation pathway was calculated. Depending on acid structure, modeling experiments showed both monomer carbonyls and propagating hydroxyl groups undergo hydrogen bonding activation. The dual activation mechanism suggests acid strength, as well as conjugate base effects, play vital roles in catalyzing cyclic carbonate polymerizations. Moreover, the use of acid catalysis was shown to be compatible with amide-containing monomers while promoting controlled polymerizations.

Entities:  

Year:  2013        PMID: 35581756     DOI: 10.1021/mz3006523

Source DB:  PubMed          Journal:  ACS Macro Lett        ISSN: 2161-1653            Impact factor:   6.903


  2 in total

1.  Poly(styrene)-supported N-heterocyclic carbene coordinated iron chloride as a catalyst for delayed polyurethane polymerization.

Authors:  Hyeon-Jun Noh; T Sadhasivam; Do-Sung Jung; Keundeuk Lee; Mingu Han; Ju-Young Kim; Ho-Young Jung
Journal:  RSC Adv       Date:  2018-11-07       Impact factor: 4.036

Review 2.  Spotting Trends in Organocatalyzed and Other Organomediated (De)polymerizations and Polymer Functionalizations.

Authors:  María Valle; Marta Ximenis; Xabier Lopez de Pariza; Julian M W Chan; Haritz Sardon
Journal:  Angew Chem Int Ed Engl       Date:  2022-08-10       Impact factor: 16.823

  2 in total

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