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Predator-Prey Interactions between Droplets Driven by Nonreciprocal Oil Exchange

Authors :
Meredith, Caleb H.
Moerman, Pepijn G.
Groenewold, Jan
Chiu, Yu-Jen
Kegel, Willem K.
van Blaaderen, Alfons
Zarzar, Lauren D.
Source :
Nature Chemistry 12, 1136, 2020
Publication Year :
2019

Abstract

Chemotactic interactions are ubiquitous in nature and can lead to nonreciprocal and complex emergent behavior in multibody systems. Here we show how chemotactic signaling between microscale oil droplets of different chemistries in micellar surfactant solutions can result in predator-prey-like 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. The nonreciprocal behavior occurs in a wide variety of oil and surfactant conditions, and we systematically elucidate chemical design rules for tuning the interactions between droplets by varying oil and surfactant chemical structure and concentration. Through integration of experiment and simulation, we also investigate the active behavior and dynamic reorganization of multi-droplet clusters. Our findings demonstrate how chemically-minimal systems can be designed with controllable, non-reciprocal chemotactic interactions to generate emergent self-organization and collective behaviors reminiscent of biological systems.

Details

Database :
arXiv
Journal :
Nature Chemistry 12, 1136, 2020
Publication Type :
Report
Accession number :
edsarx.1912.10102
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/s41557-020-00575-0