Formulation of Microwave-Assisted Natural-Synthetic Polymer Composite Film and Its Physicochemical Characterization

Author:

Ullah Aman12,Khan Nauman Rahim23ORCID,Khan Muaz Habib12,Mehmood Saima12,Khan Jahangir4,Iftikhar Tayyaba5,Gul Inam Ullah12,Basit Hafiz Muhammad12,Qayum Mughal3,Shah Shefaat Ullah12

Affiliation:

1. Department of Pharmaceutics, Faculty of Pharmacy, Gomal University, DI Khan, 29050 KPK, Pakistan

2. Gomal Centre for Skin/Regenerative Medicine and Drug Delivery Research (GCSRDDR), Faculty of Pharmacy, Gomal University, DI Khan, 29050 KPK, Pakistan

3. Department of Pharmacy, Kohat University of Science and Technology, Kohat, 26000 KPK, Pakistan

4. Department of Pharmacy, University of Malakand, Chakdara Lower Dir, 18800 KPK, Pakistan

5. Department of Pharmacy, Abdul Wali Khan University Mardan, 23200 KPK, Pakistan

Abstract

This study is aimed at microwave-assisted synthesis of sodium carboxymethylcellulose and Eudragit L100 composite film and its physicochemical characterization. The film was developed with varying quantities of each polymer and treated with microwave at a fixed frequency of 2450 MHz with a power of 350 Watts for 60 and 120 s. All formulations were characterized for thickness/weight uniformity, moisture adsorption, erosion and water uptake, tensile strength, and vibrational, thermal, and surface morphological analysis in comparison with untreated film samples. Results indicated that microwave treatment for 60 s significantly improved the tensile strength, reduced the water adsorption, delayed erosion, and reduced the water uptake in comparison with the untreated and 120 s treated film formulations. The vibrational analysis revealed rigidification of hydrophilic domains at OH/NH moiety and fluidization of hydrophobic domains at asymmetric and symmetric CH moieties, which is envisaged to be due to the formation of new linkages between the two polymers. These were later confirmed by thermal analysis where a significant rise in transition temperature, as well as enthalpy of the system, was recorded. The microwave treatment for 60 s is thus advocated to be the best treatment condition for developing sodium carboxymethylcellulose and Eudragit L100 composite polymeric films.

Funder

Higher Education Commission, Pakistan

Publisher

Hindawi Limited

Subject

Polymers and Plastics

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