Research output
Cooperative Two-Component Self-Assembly of Mono- And Ditopic Monomers
Abstract
A N -methylated benzene-1,3,5-tricarboxamide (BTA) was synthesized, characterized, and introduced as a monotopic BTA monomer capable of interacting with the supramolecular polymer formed via the cooperative self-assembly of the analogous ditopic BTA monomers. Using optical spectroscopy and viscometry, in combination with mathematical modeling and DFT calculations, we were able to understand in detail the consequence of introducing a second monotopic component in the self-assembly of BTA monomers into long supramolecular polymers, taking explicitly the cooperative nature of the self-assembly process into account. To this end, a binary self-assembly model that includes both the monotopic and ditopic BTA monomer and that addresses the presence of both monomers and polymers (characteristic of a cooperative supramolecular polymer) was developed and successfully applied to model the viscometry data. The binary self-assembly model presented herein can be more generally applied to other cooperative supramolecular polymers to which a second component is added that can interact with the monomers and/or polymers and thus can contribute to a better understanding of more complex self-assembling systems.
Abstract from OpenAlex , checked 2026-06-29.
Citation
Smulders, M.M.J.; Nieuwenhuizen, M.M.L.; Grossman, M.; Filot, I.A.W.; Lee, C.C.; de Greef, T.F.A.; Schenning, A.P.H.J.; Palmans, A.R.A.; Meijer, E.W. Cooperative Two-Component Self-Assembly of Mono- And Ditopic Monomers. Macromolecules 2011, 44 (16), 6581-6587. 10.1021/ma201255q
Metric Source
Citation markers are read from Scopus when configured, with public DOI metadata as fallback, and cached locally. They can differ from Pure counts shown on institutional portals. Checked 2026-07-09 via Scopus.