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Microscopic origin of the scattering pre-peak in aqueous propylamine mixtures: X-ray and neutron experiments versus simulations (CROSBI ID 265364)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Almásy, László ; Kuklin, Alexander I. ; Požar, Martina ; Baptista, Anthony ; Perera, Aurélien Microscopic origin of the scattering pre-peak in aqueous propylamine mixtures: X-ray and neutron experiments versus simulations // PCCP. Physical chemistry chemical physics, 21 (2019), 18; 9317-9325. doi: 10.1039/c9cp01137d

Podaci o odgovornosti

Almásy, László ; Kuklin, Alexander I. ; Požar, Martina ; Baptista, Anthony ; Perera, Aurélien

engleski

Microscopic origin of the scattering pre-peak in aqueous propylamine mixtures: X-ray and neutron experiments versus simulations

The structure of aqueous propylamine mixtures is investigated through X-ray and neutron scattering experiments, and the scattered intensities compared with computer simulation data. Both sets of data show a prominent scattering pre-peak, which first appears at propylamine mole fraction x ≥ 0.1 around scattering vector k ≈ 0.2 Å−1, and evolves towards k ≈ 0.8 Å−1 for neat propylamine x = 1. The existence of a scattering pre-peak in this mixture is unexpected, specifically in view of its absence in aqueous 1-propanol or aqueous DMSO mixtures. The detailed analysis of the various atom–atom structure factors and snapshots indicates that significant micro-structures exist, which produces correlation pre-peaks in the atom–atom structure factors, positive for like species atom correlations and negative for cross species correlations. The scattering pre-peak depends on how these two contributions cancel out or not. The way the amine group bonds with water produces a pre-peak through an imbalance of the positive and negative scattering contributions, unlike 1-propanol and DMSO, where these 2 contributions compensate exactly. Hence molecular simulations demonstrate how chemical details influence the microscopic segregation in different types of molecular emulsions and can be detected or not by scattering experiments.

binary-mixture ; molecular-dynamics ; scattering-experiments ; propylamine-water ; scattering-intensity

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

Podaci o izdanju

21 (18)

2019.

9317-9325

objavljeno

1463-9076

1463-9084

10.1039/c9cp01137d

Povezanost rada

Fizika, Interdisciplinarne prirodne znanosti

Poveznice
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