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1.
Soft Matter ; 19(36): 6896-6902, 2023 Sep 20.
Article in English | MEDLINE | ID: mdl-37606644

ABSTRACT

The motion of self-propelling microswimmers is significantly affected by confinement, which can enhance or reduce their mobility and also steer the direction of their propulsion. While their interactions with solid boundaries have already received considerable attention, many aspects of the influence of liquid-liquid interfaces (LLI) on active particle propulsion still remain unexplored. In this work, we studied the adsorption and motion of bimetallic Janus sideways propelled rods dispersed at the interface between an aqueous solution of hydrogen peroxide and oil. The wetting properties of the bimetallic rods result in a wide distribution of their velocities at the LLI. While a fraction of rods remain immotile, we note a significant enhancement of motility for the rest of the particles with velocities of up to 8 times higher in comparison to those observed near a solid wall. Liquid-liquid interfaces, therefore, can provide a new way to regulate the propulsion of bimetallic particles.

2.
Soft Matter ; 17(9): 2369-2373, 2021 Mar 11.
Article in English | MEDLINE | ID: mdl-33606868

ABSTRACT

A possible application of self-propelling particles is the transport of microscopic cargo. Maximizing the collection and transport efficiency of particulate matter requires the area swept by the moving particle to be as large as possible. One such particle geometry are rods propelled perpendicular to their long axis, that act as "sweepers" for collecting particles. Here we report on the required Janus coating to achieve such motion, and on the dynamics of the collection and transport of microscopic cargo by sideways propelled Janus rods.

3.
Article in English | MEDLINE | ID: mdl-20040434

ABSTRACT

This paper reviews our recent work on vibrating sensors for the physical properties of fluids, particularly viscosity and density. Several device designs and the associated properties, specifically with respect to the sensed rheological domain and the onset of non-Newtonian behavior, are discussed.


Subject(s)
Acoustics/instrumentation , Densitometry/instrumentation , Micro-Electrical-Mechanical Systems/instrumentation , Nephelometry and Turbidimetry/instrumentation , Transducers , Computer-Aided Design , Densitometry/methods , Equipment Design , Equipment Failure Analysis , Miniaturization , Nephelometry and Turbidimetry/methods , Reproducibility of Results , Sensitivity and Specificity , Viscosity
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