Optical and physical properties of zirconium dioxide reinforced poly(methyl methacrylate) nanocomposite films

Author:

James Jemy12ORCID,Johnson Rosemary3,Nair Anjali R.3,Eapen Nitin George4,Joseph Blessy1,Vignaud Guillaume2,Grohens Yves2,Laroze David5,Kabdrakhmanova Sana6,Kalarikkal Nandakumar1,Thomas Sabu137ORCID

Affiliation:

1. International and Inter‐University Centre for Nanoscience and Nanotechnology (IIUCNN) Mahatma Gandhi University Kottayam Kerala India

2. IRDL (UMR CNRS 6027) Universite de Bretagne Sud Lorient France

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

4. School of Chemical Sciences Mahatma Gandhi University Kottayam Kerala India

5. Instituto de Alta Investigación Universidad de Tarapacá Arica Chile

6. Department of Chemical and Biochemical Engineering Laboratory of Engineering Profile Satbayev University Almaty City Kazakhstan

7. Department of Chemical Sciences University of Johannesburg Johannesburg South Africa

Abstract

AbstractThe objective of this study was to investigate the fundamental aspects of acrylic resin and zirconia nanoparticle interaction to analyze the optical properties and subsequent changes in refractive index with incremental loading of nanoparticles. Poly(methyl methacrylate) (PMMA) reinforced with zirconia nanoparticles were prepared by dip coating, spin coating and solvent casting techniques. An overall understanding of the polymer nanocomposite film has been achieved using the spectroscopic and morphological studies. The vital aspect of this whole study is to derive a simple yet an efficient nanocomposite film capable of imparting extraordinary optical properties. Within the limitations of this research a very crucial property of the material has been revealed. The RI as well as the optical transparency of the nanocomposite film has been steadily maintained with a significant increase of RI by the magnitude of 0.06 and ~100% light transmittance on incorporation of pure zirconia nanoparticles into PMMA matrix has been achieved. The best technique found was spin coating as it could yield thin films and better transparency and higher refractive index.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Surfaces, Coatings and Films,General Chemistry

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