Published July 25, 2007 | Version Supplemental Material
Journal Article Open

Bifunctional [c2]Daisy-Chains and Their Incorporation into Mechanically Interlocked Polymers

  • 1. ROR icon California Institute of Technology
  • 2. ROR icon University of California, Los Angeles

Abstract

A strategy for the formation of mechanically interlocked polymers is presented. Ring-closing olefin metathesis has been shown to provide a very high yielding route to [c2]daisy-chains suitably functionalized to allow their one-step conversion to bisolefins which can be used as monomers in ADMET polymerizations to afford mechanically interlocked polymers. Metathesis, in two different guises is making a hitherto unreachable goal in synthesis a reality.

Additional Information

© 2007 American Chemical Society. Received April 10, 2007. Publication Date (Web): June 27, 2007. We would like to thank Drs. Stuart Cantrill, Al Nelson, and Anna Sanchez for useful discussions. The ruthenium metathesis catalyst was received as a generous gift from Materia. We thank Lawrence M. Henling and Dr. Michael W. Day for the X-ray crystallographic data. The work was supported by the Office of Naval Research through its MURI Program.

Attached Files

Supplemental Material - ja0725100si20070410_112753.cif

Supplemental Material - ja0725100si20070523_044613.pdf

Files

ja0725100si20070523_044613.pdf

Files (1.4 MB)

Name Size
md5:eabba9e250fed270d4eca272427b6257
60.4 kB Download
md5:87b7a990b81650a07ad4e33c434dc3d4
1.4 MB Preview Download

Additional details

Identifiers

Eprint ID
76807
Resolver ID
CaltechAUTHORS:20170421-090622527

Funding

Office of Naval Research (ONR)

Dates

Created
2017-04-21
Created from EPrint's datestamp field
Updated
2021-11-15
Created from EPrint's last_modified field