Date Palm Cellulose Nanocrystals (CNCs)/Polyamide Composites: Tailoring Morphological, Mechanical, and Thermal Properties

Author:

Jose Cintil1,Anju Thoppil2ORCID,Tharayil Abhimanyu3,Sobolciak Patrik4,Krupa Igor4,Al Maadeed Mariam4ORCID,Kargarzadeh Hanieh5ORCID,Thomas Sabu3

Affiliation:

1. Department of Chemistry, Newman College, Thodupuzha 685585, Kerala, India

2. Department of Biochemistry, Newman College, Thodupuzha 685585, Kerala, India

3. School of Energy Materials, Mahatma Gandhi University, Kottayam 686560, Kerala, India

4. Center for Advanced Materials, Qatar University, Doha 2713, Qatar

5. Center of Molecular and Macromolecular Studies, Polish Academy of Sciences, Sienkiewicza 112, 90-363 Lodz, Poland

Abstract

In the present study, polyamide (PA) was successfully reinforced with cellulose nanocrystal (CNC) prepared from date palm leaves using two different techniques, electrospinning and the solution casting method, and a comparative study of these two systems was performed. The morphological, thermal, wetting, and mechanical properties of the nanocomposites were analyzed for CNC content between 0 and 5 wt%. Morphological analyses showed different roughness in the fractured surface of neat PA and its nanocomposites after the addition of CNC. The modified composite is found to have a smooth surface without cracks and showed increased roughness with greater hydrophilicity and thermal stability. The nano-indentation results showed that the highest hardness was obtained at 5% CNC loading for the solution cast composite samples, which could be related to the relatively good CNC dispersion with good filler matrix bonding as evidenced by the morphological characterization. We also observed that the electrospinning technique produced nanocomposites of better thermo-physical properties than the solution cast method. The results point to the prospect of the development of nanocomposite films using date-palm-leaf-derived CNC incorporated in PA for high-performance and advanced material applications such as membranes.

Funder

Qatar National Research Funded Project

Publisher

MDPI AG

Subject

Engineering (miscellaneous),Ceramics and Composites

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