Molecular engineering of organic reagents and catalysts using soluble polymers Academic Article uri icon

abstract

  • The separation of the final product of a reaction from byproducts, catalysts, or excess reagents is a process common to all synthetic procedures. Various methods to facilitate such separations continue to receive increasing attention as avenues to refine synthetic protocols. This review discusses recent developments in one of these areas, the use of soluble polymers as supports for organic synthesis and catalysis. The general purpose of such work is to combine the principal beneficial features of heterogeneous and homogeneous systems to achieve facile product/catalyst recovery without the polymer affecting the chemistry of known solution-phase processes. The work described here demonstrates that it is often possible to engineer a desired solubility profile, phase behavior, reactivity/selectivity profile, and other beneficial properties into a synthetic reagent or catalyst system by an appropriate choice of soluble polymer support and recovery scheme. In this review, emphasis is given to research published within the last two years. 2001 Elsevier Science Ltd. All rights reserved.

published proceedings

  • PROGRESS IN POLYMER SCIENCE

altmetric score

  • 6

author list (cited authors)

  • Osburn, P. L., & Bergbreiter, D. E.

citation count

  • 42

complete list of authors

  • Osburn, PL||Bergbreiter, DE

publication date

  • December 2001