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January 14, 2026Materials0 citationsOpen Access

Polymer Prolate Spheroids, Ellipsoids, and Their Assemblies at Interfaces—Current Status and Perspectives

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DMDamian MickiewiczMGMariusz GadzinowskiSSStanislaw Slomkowski

Key Points

  • This research aims to provide an overview of the current status and future perspectives of polymer prolate spheroids and their assemblies.
  • Review of methods for producing non-spherical particles and their adaptations
  • Discussion of advantages and disadvantages of various fabrication techniques
  • Analysis of self-organization processes at interfaces
  • Identified spheroids as promising for tailored environmental interactions
  • Highlighted the potential of microfluidic methods in particle production
  • Explored the assembly properties of spheroids in two-dimensional and three-dimensional structures

Abstract

Most nanoparticles and microparticles used as carriers of bioactive compounds are spherical in shape. Such particles are the easiest to obtain, as many processes spontaneously minimize the surface energy of the objects produced. However, in recent years, scientists have turned their attention to non-spherical particles in the hope of obtaining particles that interact with their environment in a tailored manner. The production of such particles should be easy and reproducible. The best candidates are spheroids produced by various methods. The most often used is the linear transformation of spheres during processes that preserve constant particle volume. The typical process consists of stretching a polymer matrix filled with spherical particles. The article delivers a critical overview of methods, discussing their advantages and disadvantages. A list of presented methods also includes the preparation of spheroids by polymer solution emulsification-solvent evaporation, controlled dispersion polymerization, electrohydrodynamic jetting, adsorption of amphiphilic copolymers on solid particles, and copolymer self-organization processes, as well as microfluidic methods, deformation of spherical particles into spheroids by irradiation, and phase microseparation. A special section is devoted to the self-organization of the particles at the phase boundaries. Eventually, the preparation and selected properties of two-dimensional and three-dimensional assemblies of spheroidal particles, particularly the preparation of a quasi-nematic colloidal crystal, are discussed.

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Cite This Study

Mickiewicz et al. (2026) studied this question.

synapsesocial.com/papers/6966e73f13bf7a6f02bffec1https://doi.org/10.3390/ma19020291
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