DocumentCode
3369408
Title
Viscosity dependant CdS nanocrystals embedded in silicate glass
Author
Tandon, Ram Pal ; Mishra, R.K.
Author_Institution
Department of Physics and Astrophysics, University of Delhi, India
fYear
2012
fDate
3-7 Sept. 2012
Firstpage
67
Lastpage
68
Abstract
An explicit role of viscosity on the growth of semiconductor nanocrystals dispersed in silicate glass matrix is investigated. Theoretically, a simplified Arrhenius equation, lnη = A + B/T (where η is viscosity) is used to calculate the viscosities of various glass compositions. Using Diffusion - Controlled Growth model it is established that average radius of grain (QD) is inversely proportional to the cube root of the viscosity of supersaturated solid solution. Experimental evidences show that grown dot size is ranging from 2nm to 20 nm for various growth times (2–50 hr). A blue shift was observed in optical absorption edge. The optical absorption spectra depict that bang gap of CdS quantum dots ranges from bulk band gap 2.4eV to 3.2eV which confirms the strong confinement of quantum dots. Photoluminescence measurements explain the observed absorption results qualitatively. CdS doped glass samples showed the red shift of emission wavelength as the thermal treatment time and temperature increased which justifies the viscosity dependence on cluster size.
Keywords
Absorption; Annealing; Glass; Mathematical model; Nanocrystals; Solids; Viscosity; glass viscosity; nanoparticle; optical absorption; photoluminescence;
fLanguage
English
Publisher
ieee
Conference_Titel
Oxide Materials for Electronic Engineering (OMEE), 2012 IEEE International Conference on
Conference_Location
Lviv, Ukraine
Print_ISBN
978-1-4673-4491-3
Type
conf
DOI
10.1109/OMEE.2012.6464840
Filename
6464840
Link To Document