Selected ETH Polymer Physics publications

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1 selected entry has been cited at least 9 times (SCI, 04-05-2024)

Article   D. Messmer, M. Kröger, A.D. Schlüter
Pushing synthesis toward the maximum generation range of dendritic macromolecules
Macromolecules 51 (2018) 5420-5429
The maximum generation gmax of a dendritic molecule denotes the value of the generation number g, above which such a compound cannot be synthesized without defects anymore due to steric constraints. For dendronized polymers (DPs), such a densely packed regime is entered far earlier (gmax ≈ 6) than it is for comparable dendrimers (gmax ≥ 10) because dendritic side chains are confined to a cylindrical rather than a spherical volume. We here report a long sought-after improvement to a key step in the divergent synthesis of high-g DPs which enabled obtaining the polymers of g = 6, 7, and 8. These DPs are of unprecedented dendritic perfection, and the representatives with g > 6 are to our knowledge the first molecules for which gmax has been surpassed. We suggest a straightforward parameter α which allows to assess whether any dendritic molecule is above gmax, given sufficiently efficient chemistry and the possibility of accurately determining the number of defects. Finally, we correlate gel permeation chromatography results and atomic force microscopic images with defect rates.


for LaTeX users
@article{DMessmer2018-51,
 author = {D. Messmer and M. Kr\"oger and A. D. Schl\"uter},
 title = {Pushing synthesis toward the maximum generation range of dendritic macromolecules},
 journal = {Macromolecules},
 volume = {51},
 pages = {5420-5429},
 year = {2018}
}

\bibitem{DMessmer2018-51} D. Messmer, M. Kr\"oger, A.D. Schl\"uter,
Pushing synthesis toward the maximum generation range of dendritic macromolecules,
Macromolecules {\bf 51} (2018) 5420-5429.

DMessmer2018-51
D. Messmer, M. Kr\"oger, A.D. Schl\"uter
Pushing synthesis toward the maximum generation range of dendritic macromolecules
Macromolecules,51,2018,5420-5429


© 08 May 2024 mk@mat.ethz.ch      1 out of 813 entries requested [H-factor to-date: > 0]