Published August 2013 | Version v1
Miscellaneous Open

Structure and properties of carbon nanotubes/sol-gel nanocomposites

Description

Carbon Nanotubes (CNTs) are promising filler materials owing to their exceptional mechanical, electrical, thermal and optical properties. Since their discovery in 1991, a major effort has been made in developing CNT-polymer nanocomposites, whereas CNT/ceramic based nanocomposites, in particularly, CNT/silica nanocomposites, have been very little studied. This thesis focuses on preparation and characterization of novel CNT/silica nanocomposite glasses synthesized by the Sol-Gel technology. A comprehensive analysis of their morphological, optical, and electrical properties was conducted, and analyzed according to existing theoretical models. The nanocomposites hosting matrix is a hybrid organic/inorganic glass prepared by the Fast-Sol-Gel (FSG) route. Using specific conditions in the FSG procedure, the resultant glasses are nonporous, exhibiting no contraction upon drying. Their analogous Classical-Sol-Gel (CSG) glasses, however, are porous, and do exhibit contraction upon drying. The FSG glasses are relatively new materials, and their physical and optical properties were only meagerly studied. In our present work we have conducted a comprehensive experimental research on some previously ignored characteristics such as: UV-vis-IR optical absorption and transmission, and the organic content effect on the refraction index n, density ρ, thermal expansion coefficient β, and thermo-optic coefficient dn/dT. We found that organic residues within the glass decrease the refractive index, density, and thermo-optic coefficient. The thermal expansion coefficient, however, increases with the organic content. A negative linear dependence of the thermo-optic coefficient on the thermal expansion coefficient was obtained. CNT/FSG nanocomposites were prepared by using a solution mixing method, while CNT/CSG nanocomposites were prepared by means of an in situ polymerization technique. Nanocomposites based on FSG hybrid glasses were characterized for their nonlinear optical and electrical properties; nanocomposites based on CSG were studied for the influence of the CNT concentration on the material porosity. We have demonstrated that incorporation of multi-walled carbon nanotubes (MWNTs) into the hybrid glasses at very low concentrations (0.02 wt.%) generates new nonlinear optical phenomena while maintaining practical transparency (∼50%). A strong "bleaching" effect was recorded when MWNT/FSG glasses were irradiated with high intensity - 1 ns-long pulses at 1064 nm. This nonlinear phenomenon is attributed to saturated absorption of the MWNTs, and is analyzed using a three-level energy scheme model.

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Additional details

Publishing Information

Publisher
Tel Aviv Univ
Imprint Place
Tel Aviv (Israel)
Imprint Pagination
114 p.
Report number
INIS-IL--18

Optional Information

Secondary number(s)
IA--1569