Anisotropic Particle Dynamics

Anisotropic particle dynamics describes how particles with direction-dependent shape or physical properties move, rotate, and interact, unlike spherical or otherwise isotropic particles. Their geometry, surface structure, or material composition makes forces, torques, friction, and hydrodynamic responses depend on orientation, often coupling translational motion to rotation. In physics, studying these dynamics helps explain how elongated, faceted, or patchy particles organize into aligned structures, form clusters, or respond to external fields and flows. The principles support research in soft matter, colloidal materials, active matter, granular systems, and the design of self-assembling materials with controlled mechanical and optical properties.

Anisotropic Particle Dynamics - Related Videos

Research

JoVE EoE - Viral Growth and Techniques

Tracking Aggregation of Virus-Like Particles Using Dynamic Light Scattering

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2026

Source: Moore, M. D., et al. Alternative In Vitro Methods for the Determination of Viral Capsid Structural Integrity. J. Vis. Exp. (2017)The video demonstrates a protocol for monitoring the heat-induced aggregation of virus-like particles using dynamic light scattering (DLS). It begins with preparing a monodisperse suspension of purified particles. The sample is then loaded into a preheated DLS instrument. As the capsid proteins denature with heat, exposed hydrophobic regions cause particle...

Anisotropic Polyvinyl Alcohol Phantom Fabrication for Ultrasound Elastography: Procedure and Quality Controls

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2026

This protocol describes a robust, reproducible method for fabricating anisotropic polyvinyl alcohol (PVA) phantoms—essential tools for validating ultrasound elastography techniques targeting mechanically anisotropic soft tissues (e.g., skeletal muscle).

Facet-to-facet Linking of Shape-anisotropic Colloidal Cadmium Chalcogenide Nanostructures

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2017

A protocol detailing how shape-anisotropic colloidal cadmium chalcogenide nanocrystals can be covalently linked via their end facets is presented here.

Grafting Multiwalled Carbon Nanotubes with Polystyrene to Enable Self-Assembly and Anisotropic Patchiness

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Cited by 5 •

2018

A procedure for the synthesis of polystyrene-grafted multiwalled carbon nanotubes using successive chemical modification steps to selectively introduce the polymer chains to the sidewalls and their self-assembly via anisotropic patchiness is presented.

Application of Voltage in Dynamic Light Scattering Particle Size Analysis

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Cited by 6 •

2020

Here, a protocol to apply voltage to solution during dynamic light scattering particle size measurements with the intent to explore the effect of voltage and temperature changes on polymer aggregation is presented.

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