Investigating of laser effect on dielectrical anisotropy properties of liquid crystals doped polymer, dye and carbon particles
2007
0 views
0 downloads
Advisor: Doç. Dr. Fahrettin Yakuphanoğlu
Abstract (EN)
In this study, 4-cyano-4?-n-heptylbiphenyl liquid crystal has been doped by polymer, dye and carbon nanotube materials. The dielectrical properties of the liquid crystals have been investigated using dielectrical spectroscopy method. Laser illumination changed dielectrical anisotropy values of the liquid crystals doped polymer, dye and carbon nanotube. The dielectrical relaxation mechanism of the liquid crystals was analyzed by Cole and Cole curves. The perpendicular and parallel components of the electrical conductivity of the liquid crystals were mesasured as a function of frequency. The current-voltage characterisitics of the liquid crystals under dark and illumination conditions were investigated. Consequently, it was observed that the dielectrical parameters and dielectrical anisotropy properties of the liquid crystals doped polymer, dye and carbon nanotube were changed by laser effect. Keywords: Liquid crystal, laser, dielectrical anisotropy, polymer, dye, carbon nanotube
Author
Dr. Talip Aldanma
How to Cite
Talip Aldanma (Master Thesis). Investigating of laser effect on dielectrical anisotropy properties of liquid crystals doped polymer, dye and carbon particles, 2007, Fırat University.
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Fırat University
- Color usage at Turkish Divan of Fuzûlî(2013)
- The effects of thermal aging in Cu-Al-Ni and Cu-Al-Be shape memory alloys(2009)
- 1551 M. (959 H.) tarih ve 282 No'lu Tapu Tahrir Defterine göre Basra(1996)
- Comparison of element concentrations in crude oil samples taken from different sites in Iraq and Turkey(2021)
- A grammatical study on a Kırghız author Cengiz Aytmatov's novel named as "Deñiz Boyloy Cortqon Ala Döböt" (Introduction-analysis -text)(2021)
- Digital forms of solidarity: A sociological reading(2021)