Dispersion of Multiferroic Nanoparticles in a Bent-Core Nematic Liquid Crystal: Experimental and Theoretical Study

Fuente: arXiv
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Main Authors: Mandal, Dhananjoy, Wang, Yiwei, Kaur, Supreet, Mohiuddin, Golam, Majumdar, Apala, Sinha, Aloka
Format: Preprint
Published: 2023
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_version_ 1866910518962290688
author Mandal, Dhananjoy
Wang, Yiwei
Kaur, Supreet
Mohiuddin, Golam
Majumdar, Apala
Sinha, Aloka
author_facet Mandal, Dhananjoy
Wang, Yiwei
Kaur, Supreet
Mohiuddin, Golam
Majumdar, Apala
Sinha, Aloka
contents A novel nanocomposite system has been prepared by dispersing multiferroic bismuth ferrite nanoparticles (BiFeO$_3$) in a bent-core nematic liquid crystal (8-F-OH) that exhibits cybotactic clusters. Transition temperature, optical textures, order parameter $S_m$, and dielectric spectroscopy experiments are performed in the doped system, and the results are compared with the pure one. The main experimental outcome is that the doped system has increased orientational order parameters, even though the cybotactic cluster size is reduced due to the incorporation of multiferroic BiFeO$_3$ nanoparticles. The transition temperature, as observed under polarising optical microscopy, clearly indicates a reduction of $1 - 2~ ^\circ{\rm C}$ in the doped system compared to the pure one, and we conjecture this is due to the disordering of the cybotactic cluster in the doped system. Based on the experimental findings, a Landau-de Gennes-type free energy model is developed. The model qualitatively explains the increased mean order parameter and the disordering of cybotactic clusters with increasing polarization value of nanoparticles. This is corroborated by experimental findings.
format Preprint
id arxiv_https___arxiv_org_abs_2306_14623
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Dispersion of Multiferroic Nanoparticles in a Bent-Core Nematic Liquid Crystal: Experimental and Theoretical Study
Mandal, Dhananjoy
Wang, Yiwei
Kaur, Supreet
Mohiuddin, Golam
Majumdar, Apala
Sinha, Aloka
Soft Condensed Matter
A novel nanocomposite system has been prepared by dispersing multiferroic bismuth ferrite nanoparticles (BiFeO$_3$) in a bent-core nematic liquid crystal (8-F-OH) that exhibits cybotactic clusters. Transition temperature, optical textures, order parameter $S_m$, and dielectric spectroscopy experiments are performed in the doped system, and the results are compared with the pure one. The main experimental outcome is that the doped system has increased orientational order parameters, even though the cybotactic cluster size is reduced due to the incorporation of multiferroic BiFeO$_3$ nanoparticles. The transition temperature, as observed under polarising optical microscopy, clearly indicates a reduction of $1 - 2~ ^\circ{\rm C}$ in the doped system compared to the pure one, and we conjecture this is due to the disordering of the cybotactic cluster in the doped system. Based on the experimental findings, a Landau-de Gennes-type free energy model is developed. The model qualitatively explains the increased mean order parameter and the disordering of cybotactic clusters with increasing polarization value of nanoparticles. This is corroborated by experimental findings.
title Dispersion of Multiferroic Nanoparticles in a Bent-Core Nematic Liquid Crystal: Experimental and Theoretical Study
topic Soft Condensed Matter
url https://arxiv.org/abs/2306.14623