Polyhedral Vinyl Polymer Particles Synthesized Via Solvent‐Free Radical Polymerization

Author:

Yoshida Tatsuro1,Aoki Shoichiro1,Hirai Tomoyasu23ORCID,Nakamura Yoshinobu23,Fujii Syuji23ORCID

Affiliation:

1. Division of Applied Chemistry Environmental and Biomedical Engineering Graduate School of Engineering Osaka Institute of Technology 5‐16‐1 Omiya Asahi‐ku Osaka 535–8585 Japan

2. Department of Applied Chemistry Faculty of Engineering Osaka Institute of Technology 5‐16‐1 Omiya Asahi‐ku Osaka 535–8585 Japan

3. Nanomaterials Microdevices Research Center Osaka Institute of Technology 5‐16‐1 Omiya Asahi‐ku Osaka 535–8585 Japan

Abstract

AbstractLiquid marbles (LMs) with a cubic shape are created by using various vinyl monomers as an inner liquid and polymer plates with mm size as a stabilizer. The relationship between the surface tension of the vinyl monomers and formability of the LMs is investigated. LMs can be fabricated using vinyl monomers with surface tensions of 42.7–40.3 mN m−1. The cubic polymer particles are successively synthesized via free‐radical polymerizations by irradiation of the cubic LMs with UV light in a solvent‐free manner. In addition, controlling the number of polymer plates per one LM, the shape of the plate or the coalescence of the LMs can lead to production of polymer particles with desired forms (e.g., Platonic and rectangular solids) that correspond to the shapes of the original LMs.

Publisher

Wiley

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