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Understanding universal reorientation behaviour of active Janus colloids

  • Kelly Henze
  • , William E. Uspal
  • , Martin Wittmann
  • , Juliane Simmchen*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

The dynamics of Janus particles near a wall, including velocity, MSD, propulsion mechanisms, and direction, are an ongoing subject of research. However, the orientation of these particles while swimming near a solid boundary remains largely unexplored. In particular, a systematic analysis of the factors influencing their behavior across a broad range of materials and fuels is missing. Here, we present and explore the intriguing observation that the cap orientation is constant across a wide range of material-fuel combinations. Our findings showed a stable orientation at an angle (θ) of around 90°, indicated by the vector from the catalytic “pole” to the inert pole, with respect to the wall normal. To understand this behavior, we apply a continuum model of neutral self-diffusiophoresis near an osmotic-responsive planar wall. This model predicts sliding states θ ≳ 90° (≲90°) for inert-forward (cap-forward) particles. The experimentally confirmed angles of around 90° correspond to these sliding states and persist even as the active materials of the Janus particles and the fuels, and thereby the respective b values in the model, are changed. Moreover, an analytical model reveals a critical role for the hydrodynamic force quadrupole in biasing particle tilt toward the wall. An approximate angle of ≲90° is also observed for “cap-forward” particles under certain conditions on the osmotic responsiveness of the wall.
Original languageEnglish
Pages (from-to)21708–21722
Number of pages15
JournalACS Nano
Volume20
Issue number31
Early online date27 Jul 2026
DOIs
Publication statusPublished - 11 Aug 2026

Funding

This work was supported by the Free State of Saxony and by the European Union (ESF Plus), through funding of the research group ‘MultiMOD’. Furthermore, we acknowledge the financial support from the German Fulbright Foundation for a Fulbright Cottrell Award. KH thanks Professor Dr. Fery for his support. MW and JS acknowledge the DFG-ANR project Rodrolls -490954343, ANR-21-CE30-0058. Moreover, the authors thank Khalifa Mohamed for sharing preliminary data on the organosulfide reactions. WEU was supported by the Army Research Office under Grant Number W911NF-23-1-0190. The views and conclusions contained in this document are those of the authors and should not be interpreted as representing the official policies, either expressed or implied, of the Army Research Office or the U.S. Government. The U.S. Government is authorized to reproduce and distribute reprints for Government purposes notwithstanding any copyright notation herein.

Keywords

  • active colloids
  • Janus particles
  • orientation
  • wall interactions

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