Shape Matters in Magnetic-Field-Assisted Assembly of Prolate Colloids

Publication date

2022-02-22

Authors

Pal, Antara
Filippo, Carlo Andrea De
Ito, Thiago
Kamal, Md Arif
Petukhov, A.V.ORCID 0000-0001-9840-6014ISNI 0000000389991404
Michele, Cristiano De
Schurtenberger, Peter

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Advisors

Supervisors

Document Type

Article
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Abstract

An anisotropic colloidal shape in combination with an externally tunable interaction potential results in a plethora of self-assembled structures with potential applications toward the fabrication of smart materials. Here we present our investigation on the influence of an external magnetic field on the self-assembly of hematite-silica core-shell prolate colloids for two aspect ratios ρ = 2.9 and 3.69. Our study shows a rather counterintuitive but interesting phenomenon, where prolate colloids self-assemble into oblate liquid crystalline (LC) phases. With increasing concentration, particles with smaller ρ reveal a sequence of LC phases involving para-nematic, nematic, smectic, and oriented glass phases. The occurrence of a smectic phase for colloidal ellipsoids has been neither predicted nor reported before. Quantitative shape analysis of the particles together with extensive computer simulations indicate that in addition to ρ, a subtle deviation from the ideal ellipsoidal shape dictates the formation of this unusual sequence of field-induced structures. Particles with ρ = 2.9 exhibit a hybrid shape containing features from both spherocylinders and ellipsoids, which make their self-assembly behavior richer than that observed for either of the “pure” shapes. The shape of the particles with higher ρ matches closely with the ideal ellipsoids, as a result their phase behavior follows the one expected for a “pure” ellipsoidal shape. Using anisotropic building blocks and external fields, our study demonstrates the ramifications of the subtle changes in the particle shape on the field-directed self-assembled structures with externally tunable properties.

Keywords

Monte Carlo (MC) simulation, directed self-assembly, liquid crystals, magnetic anisotropic colloids, particle shape-analysis, small-angle X-ray scattering (SAXS), General Materials Science, General Engineering, General Physics and Astronomy

Citation

Pal, A, Filippo, C A D, Ito, T, Kamal, M A, Petukhov, A V, Michele, C D & Schurtenberger, P 2022, 'Shape Matters in Magnetic-Field-Assisted Assembly of Prolate Colloids', ACS Nano, vol. 16, no. 2, pp. 2558–2568. https://doi.org/10.1021/acsnano.1c09208