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Advances in Molecular Simulation, 2016

Molecular dynamics simulation of the atomistic monolayer structures of N-acyl amino acid-based surfactants

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Pages 491-501 | Received 19 May 2016, Accepted 12 Nov 2016, Published online: 29 Nov 2016
 

Abstract

Atomic molecular dynamics simulations have been performed on the monolayer systems of N-acyl amino acid-based surfactants. The role of intermolecular hydrogen bonds and ionic side chain length of dicarboxylate surfactants were investigated through radial and spatial distribution functions. It was found that the hydrogen bonding capability between surfactants was the major factor determining the surface area each surfactant could occupy. Tighter packing of surfactants would lead to a weaker interaction with water molecule, and the protonation of carboxylate groups resulted in stronger inter-surfactant interactions. The hydrogen bonds with water molecules were found to prevail between the carboxylate groups, and regular cage-like water distributions surrounding the surfactant headgroups were seen. The introduction of divalent ions leads to a significant increase of counterion binding, and their intramolecular and intermolecular bindings of calcium ions were also well characterised. The intramolecular chelation of calcium ions was found impossible between the carboxylate groups for N-acyl glutamate due to its flexible side chain.

Acknowledgements

We acknowledge the provision of computational resources from the supercomputing centre of the Chinese Academy of Sciences.

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