| Literature DB >> 21711742 |
Xiaopeng Fang1, Yimin Xuan, Qiang Li.
Abstract
A novel spectral transmittance approach for measuring the extinction coefficient of magnetic fluids is proposed. The measuring principle and accuracy of the approach are analysed. Experiments are conducted to measure the extinction coefficient of magnetic fluids with different particle volume fractions. The relative uncertainty of experimental data is less than 1.8%. The experimental results indicate that the extinction coefficient of magnetic fluids increases with increase of the volume fraction of suspended magnetic nanoparticles and the optical properties of the particle material have a significant effect on the extinction coefficient of the magnetic fluids.Entities:
Year: 2011 PMID: 21711742 PMCID: PMC3211297 DOI: 10.1186/1556-276X-6-237
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Reflection and transmission by a glass slab.
Figure 2Reflection and transmission by magnetic fluid film.
Figure 3Spectral transmittance of water films with two different thicknesses.
Figure 4Comparison of the result measured by the present approach and that of Hale and Querry's method for extinction coefficients of water at 25°C.
The relative uncertainty of the measured extinction coefficient of water at different wavelengths
| λ (nm) | 1400 | 1450 | 1500 | 1550 | 1600 | 1650 | 1700 | 1750 |
|---|---|---|---|---|---|---|---|---|
| Relative uncertainty (%) | 9.57 | 5.92 | 7.60 | 10.94 | 13.43 | 15.72 | 16.53 | 14.31 |
| λ (nm) | 1800 | 1850 | 1875 | 1900 | 1925 | 1950 | 1975 | 2000 |
| Relative uncertainty (%) | 12.17 | 10.93 | 4.67 | 4.67 | 4.47 | 4.49 | 4.59 | 4.74 |
Figure 5Spectral transmittance of magnetic fluid films with different thicknesses and various particle volume fractions.
Figure 6Comparison of the result measured by the experiment and that predicted by the MGT for extinction coefficients of magnetic fluids with different particle volume fractions.
The relative uncertainty of the measured extinction coefficient of magnetic fluids with different particle volume fractions at different wavelengths
| ϕ | λ (nm) | ||||||
|---|---|---|---|---|---|---|---|
| 500 | 550 | 600 | 650 | 700 | 750 | 800 | |
| 0.1% | 1.67% | 1.73% | 1.68% | 1.69% | 1.67% | 1.69% | 1.72% |
| 0.3% | 1.59% | 1.60% | 1.60% | 1.61% | 1.63% | 1.65% | 1.66% |
| 0.5% | 1.58% | 1.59% | 1.60% | 1.60% | 1.61% | 1.62% | 1.63% |
Figure 7Refractive index .