Issue 20, 2022

The effects of functionalized graphene oxide on the thermal and mechanical properties of liquid crystalline polymers

Abstract

Herein, we report a robust approach for the selective covalent functionalization of graphene oxide (GO) with 4-hydroxybenzoic acid (HBA) for developing polymeric nanocomposites based on liquid crystalline polymers (LCPs). The functionalization of GO with HBA was confirmed by Raman spectroscopy, Fourier transform infrared (FT-IR) spectroscopy, and X-ray diffraction (XRD) spectroscopy. The surface morphology of GO and functionalized GO (FGO) was studied using field emission scanning electron microscopy (FE-SEM). Furthermore, the interactions between FGO and LCPs have been investigated by FT-IR spectroscopy, whereas dispersion of GO and FGO in the LCP matrix was analyzed by FE-SEM. The better dispersion of FGO can be attributed to the hydrogen bonding and π–π stacking interactions between FGO and LCPs. Our results showed that even the addition of 5 wt% FGO in the LCP matrix significantly enhances the tensile strength and storage modulus of the pristine LCPs by 84% and 78% respectively. Compared to neat LCPs, FGO incorporated composites also demonstrate an improvement in the melting temperature (Tm) by 11 °C and glass transition temperature (Tg) by 12 °C. Furthermore, thermogravimetric analysis (TGA) was performed to evaluate the thermal stability of the composite. The 5 and 50% decomposition temperature for the LCP/FGO nanocomposites (containing 5 wt% FGO) increased by 75 °C and 107 °C respectively.

Graphical abstract: The effects of functionalized graphene oxide on the thermal and mechanical properties of liquid crystalline polymers

Article information

Article type
Paper
Submitted
28 Jan 2022
Accepted
19 Apr 2022
First published
21 Apr 2022

Soft Matter, 2022,18, 3981-3992

The effects of functionalized graphene oxide on the thermal and mechanical properties of liquid crystalline polymers

B. S. Bohra, N. Pandey, G. Tatrari, S. Rana and N. G. Sahoo, Soft Matter, 2022, 18, 3981 DOI: 10.1039/D2SM00143H

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