https://doi.org/10.1007/s40090-018-0146-3

Methacrylate copolymers and their composites with nano-CdS: synthesis, characterization, thermal behavior, and antimicrobial properties

  1. Department of Advanced Organic Chemistry, P. D. Patel Institute of Applied Sciences, Charotar University of Science and Technology, Changa, 388421, Gujarat, India
  2. Department of Chemistry, Sardar Patel University, Vallabh Vidhyanagar, 388120, Gujarat, India

Published in Issue 2023-11-17

How to Cite

Shekh, M. I., Patel, D. M., Patel, N. N., Patel, U. S., & Patel, K. P. (2023). Methacrylate copolymers and their composites with nano-CdS: synthesis, characterization, thermal behavior, and antimicrobial properties. International Journal of Industrial Chemistry, 9(2). https://doi.org/https://doi.org/10.1007/s40090-018-0146-3

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Abstract

Homo- and copolymers of 2-(N-phthalimido)ethyl methacrylate (NPEMA) and p-chlorophenyl methacrylate (PCPMA) were prepared in N,N-dimethyl formamide (DMF) solution at 70 °C using 2,2-azo-bisisobutyronitrile (AIBN) as initiator. The nano-CdS-doped polymer composite of NPEMA and PCPMA was prepared via in situ technique. The homo- and copolymers of NPEMA and PCPMA were characterized using FT-IR spectroscopy and gel permeation chromatography (GPC). The polymer nano composites were characterized using FT-IR spectroscopy, X-ray diffraction, and transmission electron microscopy. The reactivity ratios (r1 and r2) were obtained from the various linear graphical methods. The values of r1 (NPEMA)â=â0.55 and r2 (PCPMA)â=â1.30 were found from the same graphical methods. The copolymer microstructures were found from the mean sequence length, run number, and dyad fraction. Thermal behavior of polymers and polymer nano composites under nitrogen atmosphere was studied. The activation energies of neat polymers were varied in the range of 56â85 kJ/mol, while 28â56 kJ/mol energies were found for nano-CdS-doped polymer composites. The thermodynamic parameters of thermal degradation were also obtained. Kinetic and thermodynamic parameters were confirming the stability of the neat polymers than polymer nano composites. The polymers were assessed on different microorganisms for obtaining the antimicrobial properties. Overall, the polymers permit 10â52, 20â58, and 18â56% growth of bacteria, fungi, and yeast, respectively.

Keywords

  • Antimicrobial properties,
  • Copolymerization,
  • Polymer nano composites,
  • Reactivity ratio,
  • Thermal properties