Infrared Absorbance of Distributed-Size HgTe Quantum Dots Under Diffuse Reflectance

kelany, mohamed; Aref, Shaimaa Ib; Kana, Maram T.H.Abou; Sabry, Yasser M.; Fahmy, Hasnaa M.; Khalil D;

Abstract


Colloidal quantum dots (CQDs) have various uses in photodetectors, solar cell devices and spectroscopic signal enhancement. In this paper, we synthesize mercury telluride (HgTe) CQDs and study the effect of the QDs size distribution on their infrared absorbance spectrum. The resulting dots are characterized using x-ray diffraction analysis and the size was found to be about 8.6 nm with a standard deviation of about 2 nm using high-resolution transmission electron microscope. The produced CQDs are optically characterized using Fourier transform infrared spectrometer in diffuse reflectance mode in the wavelength range from 3 to 11 μm. The absorption shows a wide absorption edge rather than a sharp feature. The measured data are fitted with a sum of a polynomial and five gaussian functions to extract the absorption lines of the QDs.


Other data

Title Infrared Absorbance of Distributed-Size HgTe Quantum Dots Under Diffuse Reflectance
Authors kelany, mohamed ; Aref, Shaimaa Ib; Kana, Maram T.H.Abou; Sabry, Yasser M.; Fahmy, Hasnaa M.; Khalil D 
Keywords Colloidal quantum dots;diffuse reflectance;FTIR spectroscopy;Mercury Telluride
Issue Date 1-Jan-2022
Conference 4th IEEE International Conference on Design and Test of Integrated Micro and Nano-Systems, DTS 2022
ISBN 9781665497831
DOI 10.1109/DTS55284.2022.9809874
Scopus ID 2-s2.0-85135014876

Recommend this item

Similar Items from Core Recommender Database

Google ScholarTM

Check

Citations 1 in scopus
views 25 in Shams Scholar


Items in Ain Shams Scholar are protected by copyright, with all rights reserved, unless otherwise indicated.