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Correction: Magnetically induced structural anisotropy in binary colloidal gels and its effect on diffusion and

Christoffer Abrahamsson1, Lars Nordstierna, Johan Bergenholtz

  • 1Department of Chemical and Biological Engineering, Chalmers University of Technology, Kemivägen 10, 412 96, Gothenburg, Sweden. abrahamc@chalmers.se.

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Summary

This correction clarifies magnetically induced structural anisotropy in binary colloidal gels. It refines understanding of how this anisotropy affects diffusion and pressure-driven permeability in soft matter.

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Area of Science:

  • Soft Matter Physics
  • Colloidal Science
  • Materials Science

Context:

  • Binary colloidal gels exhibit complex structural behaviors.
  • External fields can induce significant changes in material properties.
  • Understanding diffusion and permeability is crucial for material applications.

Purpose:

  • To correct and clarify previously reported findings.
  • To accurately describe the effect of magnetic fields on colloidal gel structure.
  • To refine the understanding of transport phenomena in anisotropic gels.

Summary:

  • This correction addresses the paper 'Magnetically induced structural anisotropy in binary colloidal gels and its effect on diffusion and pressure driven permeability'.
  • It provides revised details regarding the magnetically induced structural anisotropy in these gels.
  • The correction ensures accurate reporting of the impact on diffusion and pressure-driven permeability.

Impact:

  • Ensures the scientific record is accurate for researchers in soft matter and colloid science.
  • Facilitates correct interpretation of transport properties in magnetically responsive materials.
  • Supports the development of advanced materials with tunable anisotropic properties.