Orbits, spirals, and trapped states: Dynamics of a phoretic Janus particle in a radial concentration gradient
Abstract: A longstanding goal in colloidal active matter is to understand how gradients in fuel concentration influence the motion of phoretic Janus particles. Here, we present a theoretical description of the motion of a spherical phoretic Janus particle in the presence of a radial gradient of the chemical solute driving self-propulsion. Radial gradients are a geometry relevant to many scenarios in active matter systems and naturally arise due to the presence of a point source or sink of fuel. We derive an analytical solution for the Janus particle's velocity and quantify the influence of the radial concentration gradient on the particle's trajectory. Compared to a phoretic Janus particle in a linear gradient in fuel concentration, we uncover a much richer set of dynamical behaviors, including circular orbits and trapped stationary states. We identify the ratio of the phoretic mobilities between the two domains of the Janus particle as a central quantity in tuning their dynamics. Our results provide a path for developing novel protocols for tuning the dynamics of phoretic Janus particles and mixing fluid at the microscale. In addition, this work suggests a method for quantifying the surface properties of phoretic Janus particles, which have proven challenging to probe experimentally.
- Okmen Altas, B.; Goktas, C.; Topcu, G.; Aydogan, N. Multi-Stimuli-Responsive Tadpole-Like Polymer/Lipid Janus Microrobots for Advanced Smart Material Applications. ACS Appl. Mater. Interfaces. 2024,
- Ghosh, A.; Xu, W.; Gupta, N.; Gracias, D. H. Active Matter Therapeutics. Nano Today 2020, 31
- Stürmer, J.; Seyrich, M.; Stark, H. Chemotaxis in a Binary Mixture of Active and Passive Particles. J. Chem. Phys. 2019, 150
- Che, S.; Zhang, J.; Mou, F.; Guo, X.; Kauffman, J. E.; Sen, A.; Guan, J. Light-Programmable Assemblies of Isotropic Micromotors. Research 2022,
- Singh, K.; Raman, H.; Tripathi, S.; Sharma, H.; Choudhary, A.; Mangal, R. Pair Interactions of Self-Propelled SiO2-Pt Janus Colloids: Chemically Mediated Encounters. Langmuir 2024,
- Happel, J.; Brenner, H. Low Reynolds Number Hydrodynamics: With Special Applications to Particulate Media; Springer, 2012
- Chasnov, J. R. Differential Equations for Engineers (Mathematics for Engineers); Independently published, 2022
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