Predator–prey interactions between droplets driven by non-reciprocal oil exchange

Publication date

2020-12-01

Authors

Meredith, Caleb H.
Moerman, Pepijn GerbenISNI 0000000393096795
Groenewold, J.ISNI 0000000368859906
Chiu, Yu Jen
Kegel, WillemISNI 0000000388841893
van Blaaderen, AlfonsISNI 0000000388251965
Zarzar, Lauren D.

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Document Type

Article
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Abstract

Chemotactic interactions are ubiquitous in nature and can lead to non-reciprocal and complex emergent behaviour in multibody systems. However, developing synthetic, inanimate embodiments of a chemomechanical framework to generate non-reciprocal interactions of tunable strength and directionality has been challenging. Here we show how chemotactic signalling between microscale oil droplets of different chemistries in micellar surfactant solutions can result in predator–prey-like non-reciprocal chasing interactions. The interactions and dynamic self-organization result from the net directional, micelle-mediated transport of oil between emulsion droplets of differing composition and are powered by the free energy of mixing. We systematically elucidated chemical design rules to tune the interactions between droplets by varying the oil and surfactant chemical structure and concentration. Through the integration of experiment and simulation, we also investigated the active behaviour and dynamic reorganization of multidroplet clusters. Our findings demonstrate how chemically minimal systems can be designed with controllable, non-reciprocal chemotactic interactions to generate emergent self-organization and collective behaviours reminiscent of biological systems. [Figure not available: see fulltext.]

Keywords

General Chemistry, General Chemical Engineering

Citation

Meredith, C H, Moerman, P G, Groenewold, J, Chiu, Y J, Kegel, W K, van Blaaderen, A & Zarzar, L D 2020, 'Predator–prey interactions between droplets driven by non-reciprocal oil exchange', Nature Chemistry, vol. 12, no. 12, pp. 1136-1142. https://doi.org/10.1038/s41557-020-00575-0