JOURNAL ARTICLE

Intermolecular Forces in the Self‐Assembly of Peptide Amphiphile Nanofibers

John C. StendahlMukti S. RaoMustafa O. GülerSamuel I. Stupp

Year: 2006 Journal:   Advanced Functional Materials Vol: 16 (4)Pages: 499-508   Publisher: Wiley

Abstract

Abstract Peptide amphiphile molecules (PAs) developed in our laboratory self‐assemble from aqueous media into three‐dimensional networks of bioactive nanofibers. Multiple non‐covalent interactions promote assembly of the supramolecular nanofibers and ultimately determine the bulk physical properties of the macroscopic gels. In this study, we use oscillatory rheology, Fourier‐transform infrared spectroscopy, and circular‐dichroism spectroscopy to better understand the assembly mechanism of a typical PA molecule known as PA‐1. Self‐assembly of PA‐1 is triggered by counterion screening and stabilized by van der Waals and hydrophobic forces, ionic bridging, and coordination and hydrogen bonding. The concentration, electronic structure, and hydration of counterions significantly influence self‐assembly and gel mechanical properties.

Keywords:
Materials science Counterion van der Waals force Amphiphile Self-assembly Supramolecular chemistry Hydrogen bond Intermolecular force Nanofiber Ionic bonding Molecule Chemical physics Circular dichroism Force spectroscopy Nanotechnology Crystallography Polymer Ion Organic chemistry Chemistry Atomic force microscopy Copolymer Composite material

Metrics

298
Cited By
7.67
FWCI (Field Weighted Citation Impact)
34
Refs
0.98
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Supramolecular Self-Assembly in Materials
Physical Sciences →  Materials Science →  Biomaterials
Polydiacetylene-based materials and applications
Physical Sciences →  Chemistry →  Organic Chemistry
Supramolecular Chemistry and Complexes
Physical Sciences →  Chemistry →  Organic Chemistry

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