Equilibrium configurations and capillary interactions of Janus dumbbells and spherocylinders at fluid-fluid interfaces

Publication date

2019-01-01

Authors

Anzivino, CarmineISNI 000000049335283X
Chang, F. H.ISNI 0000000492852656
Soligno, GiuseppeISNI 0000000492960710
van Roij, RenéISNI 0000000392993654
Kegel, WillemISNI 0000000388841893
Dijkstra, MarjoleinISNI 0000000358257928

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Document Type

Article
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License

taverne

Abstract

We numerically investigate the adsorption of a variety of Janus particles (dumbbells, elongated dumbbells and spherocylinders) at a fluid-fluid interface by using a numerical method that takes into account the interfacial deformations. We first determine the equilibrium configuration of a single adsorbed particle, and we find that the overall shape of the induced deformation field has a strong hexapolar mode while non-Janus particles of the same shape do not induce any interfacial deformation. We then calculate the capillary interactions between two Janus spherocylinders adsorbed at an interface. The hexapolar deformation field induces capillary attractions for laterally aligned Janus spherocylinders and repulsions for laterally anti-aligned ones. We also experimentally synthesize micrometer-sized charged Janus dumbbells and let them adsorb at a water-decane interface. After several hours we observe the formation of aggregates of dumbbells predominantly induced by interactions that appear to be capillary in nature. Our Janus dumbbells attach laterally and are all aligned, as predicted by our numerical calculations.

Keywords

Taverne, General Chemistry, Condensed Matter Physics

Citation

Anzivino, C, Chang, F, Soligno, G, Van Roij, R, Kegel, W K & Dijkstra, M 2019, 'Equilibrium configurations and capillary interactions of Janus dumbbells and spherocylinders at fluid-fluid interfaces', Soft Matter, vol. 15, no. 12, pp. 2638-2647. https://doi.org/10.1039/c8sm02361a