Precision Sulfonic Acid Polyolefins via Heterogenous to Homogenous Deprotection

Abstract

Polyolefins containing precisely spaced sulfonic acid functionality are made. First, precision ethyl sulfonate ester diene monomers are synthesized, which then are converted to acyclic diene metathesis polymers using Grubbs' catalysis. Subsequently, the poly(ethyl sulfonate esters) are deprotected post‐polymerization via two successful routes, both using a concept of “heterogenous to homogenous deprotection.” The resulting poly(sodium sulfonate) salts are then converted to precise poly(sulfonic acids), where the sulfonic acid functionality is placed either at every ninth or 21st carbon. For comparison, random versions of poly(sulfonates), their salts, and sulfonic acid polymers are synthesized via copolymerization of the “9” sulfonate monomer with 1,9‐decadiene. Precision placement of sulfonic acid functionality could lead to materials of potential utility.

Document Details

Document Type
Pub Defense Publication
Publication Date
Apr 30, 2018
Source ID
10.1002/macp.201700634

Entities

People

  • Edward B Trigg
  • Karen I Winey
  • Kenneth B. Wagener
  • Michael H. Bell
  • Taylor W. Gaines

Organizations

  • Army Research Office
  • National Science Foundation
  • United States Army Research Laboratory
  • University of Florida
  • University of Pennsylvania

Tags

Fields of Study

  • Chemistry

Readers

  • Analytical Chemistry
  • Polymer Science and Technology

Technology Areas

  • Space
  • Space - Satellites