Issue 11, 2022

Single-atom substitution enables supramolecular diversity from dipeptide building blocks

Abstract

Dipeptides are popular building blocks for supramolecular gels that do not persist in the environment and may find various applications. In this work, we show that a simple substitution on the aromatic side-chain of phenylalanine with either fluorine or iodine enables supramolecular diversity upon self-assembly at neutral pH, leading to hydrogels or crystals. Each building block is characterized by 1H- and 13C-NMR spectroscopy, LC-MS, circular dichroism, and molecular models. The supramolecular behaviour is monitored with a variety of techniques, including circular dichroism, oscillatory rheology, transmission electron microscopy, attenuated total reflectance Fourier-transformed infrared spectroscopy, visible Raman spectroscopy, synchrotron-radiation single-crystal X-ray diffraction and UV Resonance Raman spectroscopy, allowing key differences to be pinpointed amongst the halogenated analogues.

Graphical abstract: Single-atom substitution enables supramolecular diversity from dipeptide building blocks

Supplementary files

Article information

Article type
Paper
Submitted
29 Dec 2021
Accepted
01 Feb 2022
First published
07 Feb 2022

Soft Matter, 2022,18, 2129-2136

Single-atom substitution enables supramolecular diversity from dipeptide building blocks

E. Scarel, O. Bellotto, P. Rozhin, S. Kralj, M. Tortora, A. V. Vargiu, R. De Zorzi, B. Rossi and S. Marchesan, Soft Matter, 2022, 18, 2129 DOI: 10.1039/D1SM01824H

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