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Designing Libraries of First Generation AB3 and AB2 Self-Assembling Dendrons via the Primary Structure Generated from Combinations of (AB)y-AB3 and (AB)y-AB2 Building Blocks

  • Virgil Percec
  • , Catherine M. Mitchell
  • , Wook Dong Cho
  • , Satoshi Uchida
  • , Martin Glodde
  • , Goran Ungar
  • , Xiangbing Zeng
  • , Yongsong Liu
  • , Venkatachalapathy S.K. Balagurusamy
  • , Paul A. Heiney
  • University of Pennsylvania
  • University of Sheffield

Research output: Contribution to journalArticlepeer-review

212 Scopus citations

Abstract

Structural analysis of three libraries of up to five generations of self-assembling dendrons based on AB3, AB2, and combinations of AB3 with AB2 building blocks (Percec et al. J. Am. Chem. Soc. 2001, 123, 1302) facilitated the discovery of several nanoscale lattices previously unknown for organic compounds (3-D Pm3n cubic, 3-D P42/mnm tetragonal, and a crystallographically forbidden 12-fold symmetry liquid quasicrystal) and provided fundamental correlations between the molecular structure of the dendron and the shape and the diameter of the supramolecular dendrimers which, in these experiments, were limited to less than 75 A. That study concluded that alternative design principles should be elaborated for the assembly of supramolecular dendrimers of larger dimensions. Here we report design principles, synthesis and analysis of first and higher generations AB3 and AB2 self-assembling dendrons, based on various primary structures, and combinations of (AB)y-AB 3 and (AB)y-AB2 (i.e., from nondendritic AB where y = 1 to 11 and dendritic AB3 and AB2) building blocks that produced the largest structural (including six new lattices) and dimensional (100 to 217 Å diameter) diversity of supramolecular dendrimers.

Original languageEnglish
Pages (from-to)6078-6094
Number of pages17
JournalJournal of the American Chemical Society
Volume126
Issue number19
DOIs
StatePublished - 19 May 2004
Externally publishedYes

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