Solute-mediated interactions between active droplets

Publication date

2017-09-17

Authors

Moerman, PepijnISNI 0000000393096795
Moyses, Henrique W.
Wee, E. B. van derISNI 000000049322888X
Grier, David G.
van Blaaderen, AlfonsISNI 0000000388251965
Kegel, Willem K.ISNI 0000000388841893
Groenewold, JanISNI 0000000368859906
Brujic, Jasna

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

Abstract

Concentration gradients play a critical role in embryogenesis, bacterial locomotion, as well as the motility of active particles. Particles develop concentration profiles around them by dissolution, adsorption, or the reactivity of surface species. These gradients change the surface energy of the particles, driving both their self-propulsion and governing their interactions. Here, we uncover a regime in which solute gradients mediate interactions between slowly dissolving droplets without causing autophoresis. This decoupling allows us to directly measure the steady-state, repulsive force, which scales with interparticle distance as F ∼ 1/r2. Our results show that the dissolution process is diffusion rather than reaction rate limited, and the theoretical model captures the dependence of the interactions on droplet size and solute concentration, using a single fit parameter, l = 16 ± 3 nm, which corresponds to the length scale of a swollen micelle. Our results shed light on the out-of-equilibrium behavior of particles with surface reactivity

Keywords

Functional materials, Self-assembly, Active matter, Emulsions, Self-propelled particles, Laser techniques, Theories of collective dynamics & active matter, Statistical Physics, Polymers

Citation

Moerman, P G, Moyses, H W, Van Der Wee, E B, Grier, D G, Van Blaaderen, A, Kegel, W K, Groenewold, J & Brujic, J 2017, 'Solute-mediated interactions between active droplets', Physical Review E, vol. 96, no. 3, 032607. https://doi.org/10.1103/PhysRevE.96.032607