| Literature DB >> 24450850 |
Noorsaiyyidah Darman Singho1, Mohd Rafie Johan, Nurul Akmal Che Lah.
Abstract
Ag/PMMA nanocomposites were successfully synthesized by in-situ technique. Transmission electron microscopy (TEM) images show that the particles are spherical in shape and their sizes are dependent on temperature. The smallest particle achieved high stability as indicated from Zeta sizer analysis. The red shift of surface plasmon resonance (SPR) indicated the increases of particle sizes. X-ray diffraction (XRD) patterns exhibit a two-phase (crystalline and amorphous) structure of Ag/Entities:
Year: 2014 PMID: 24450850 PMCID: PMC3910675 DOI: 10.1186/1556-276X-9-42
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Mechanism of Ag/PMMA nanocomposites.
Figure 2TEM images of Ag/PMMA nanocomposites synthesized at (a) 80°C, (b) 100°C, and (c) 120°C.
The zeta potential, thermal, and mass properties of Ag/PMMA nanocomposites synthesized at different temperatures
| Pure PMMA | - | - | - | - | 97.6 | 298 | 430 |
| 80°C | 72 | -61.0 | 3.7 | 75.9 | 79.6 | 253 | 409 |
| 100°C | 96 | -54.0 | 1.7 | 86.2 | 87.9 | 217 | 396 |
| 120°C | 139 | -35.1 | 20.4 | 71.4 | 91.8 | 207 | 370 |
Figure 3Absorption spectra for Ag/PMMA nanocomposites synthesized at (a) 80°C, (b) 100°C, and (c) 120°C.
Figure 4XRD patterns (a,b) and nanocomposites at different temperatures (c,d,e). (a) Ag nanoparticles and (b) pure PMMA. Temperatures: (c) 80°C, (d) 100°C, and (e) 120°C.
Figure 5Raman spectra of Ag/PMMA nanocomposites synthesized at (a) 80°C, (b) 100°C, and (c) 120°C.
Figure 6FTIR spectra for Ag/PMMA nanocomposites at (a) 80°C, (b) 100°C, and (c) 120°C.
Figure 7TGA curves of PMMA and Ag/PMMA nanocomposites synthesized at 80°C, 100°C, and 120°C.