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Title

Thermal stability and UV-shielding properties of polymethyl methacrylate and polystyrene modified with calcium carbonate nanoparticles.

Authors

Pal, Manoj; Singh, Beena; Gautam, Jaiswar

Abstract

The influences of nanosized CaCO on the thermal and optical properties embedded in poly(methyl methacrylate) (PMMA) and polystyrene (PS) were investigated. Calcium carbonate nanoparticles were synthesized by in situ deposition technique, and its nano size (32-35 nm) was confirmed by scanning electron microscope (SEM) and X-ray studies. Nanocomposites samples of PMMA/CaCO and PS/CaCO were prepared with different filler loading (0-4 wt%) of CaCO nanoparticles by solution mixing technique. The Fourier transform infrared analysis confirmed that CaCO nanoparticles were present in the polymers matrices. The morphology and elemental composition of nanocomposites were evaluated by SEM and energy dispersive X-ray spectroscopy. The thermal properties of nanocomposites were characterized by differential scanning calorimetric, thermogravimetric, and differential thermogravimetry analysis, and the results indicate that the incorporation of CaCO nanoparticles could significantly improve the thermal properties of PMMA/CaCO and PS/CaCO nanocomposites. The glass transition temperature ( T) and decomposition temperature ( T) of nanocomposites with 4 wt% of CaCO nanoparticles were increased by 30 and 24 K in case of PMMA/CaCO and 32 and 15 K in the case of PS/CaCO nanocomposites, respectively. The obtained transparent nanocomposites films were characterized using UV-Vis spectrophotometer which shows the transparencies of nanocomposites are almost maintained in visible region while the intensity of absorption band in ultraviolet (UV) region is increased with CaCO nanoparticles contents and these composites particles could enhance the UV-shielding properties of polymers.

Subjects

THERMAL properties of metals; RADIATION shielding; ULTRAVIOLET radiation; POLYMETHYLMETHACRYLATE; POLYSTYRENE; CALCIUM carbonate; NANOPARTICLES; OPTICAL properties of metals; SOLUTION (Chemistry); SCANNING electron microscopy

Publication

Journal of Thermal Analysis & Calorimetry, 2012, Vol 107, Issue 1, p85

ISSN

1388-6150

Publication type

Academic Journal

DOI

10.1007/s10973-011-1686-3

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