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Controlling Supramolecular Chirality in Peptide-p-peptide Networks

Feb 8, 2023
Alkyl spacers of different length are able to influence supramolecular chirality as expressed in self-assembling nanomaterials.
Alkyl spacers of different length are able to influence supramolecular chirality as expressed in self-assembling nanomaterials.

Synthetic peptide libraries to probe chiroptical properties.

We found that carbon spacers between pi-conjugated electronic units and flanking peptide sequences had a profound impact on the superstructural chirality of the nanomaterials that form after self-assembly. The origins of this control were elucidated through computational analysis. These findings are of importance for chiroptical applications such as circularly polarized luminescence.

U.S. National Science Foundation and NSF DMREF, Materials for Our Future

This material is based upon work supported by the U.S. National Science Foundation Award No. 2015237. Any opinions, findings, and conclusions or recommendations expressed in this material are those of the author(s) and do not necessarily reflect the views of the U.S. National Science Foundation. This site is maintained collaboratively by principal investigators with NSF DMREF awards, independent of the NSF.