Title of article :
Surface passivation by L-arginine and enhanced optical properties of CdS quantum dots co-doped with Nd3+–Li+
Author/Authors :
Talwatkar, S. S Department of Physics - N. G. Aacharya and D. K. Marathe College of Arts - Science and Commerce - Chembur - Maharashtra, India , Sunatkari, A. L Department of Physics - Siddharth College of Arts - Science and Commerce - Fort - Maharashtra, India , Tamgadge, Y. S Department of Physics - Shri Shivaji Arts - Commerce and Science College - Maharashtra, India , Pahurkar, V. G Department of Physics - Sant Gadge Baba Amravati University - Maharashtra, India , Muley, G. G Department of Physics - Sant Gadge Baba Amravati University - Maharashtra, India
Abstract :
L-Arginine-passivated Nd3? and Li? co-doped
CdS quantum dots (QDs) were synthesized by chemical
precipitation method. Ultraviolet–visible absorption spectra
of prepared QDs show absorption in the range of
477–450 nm indicating huge blue shift in energy band gap
as compared to the bulk CdS due to quantum confinement
effect. The optical band gap is found increasing from 2.44
to 2.97 eV as the doping concentration increased from 1
to 5 wt%. Photoluminescence spectra showed that codoped
CdS QDs are highly luminescent and emit multiple
intense violet (362, 371, 385, 395 nm) and blue (422, 445,
456 and 465 nm) coloured peaks with increasing intensity
with co-dopant concentration. Fourier transform infrared
study confirmed the interaction between CdS nanoparticles
and L-arginine ligands. The structural and morphological
study revealed the formation of orthorhombic crystal
structure. The size of CdS QDs, as analysed by X-ray
diffraction and high-resolution transmission electron microscopy,
is found reducing with co-dopant concentration.
The energy dispersive X-ray analysis shows no impurities
present except dopants indicating high purity of the prepared
samples. Based on the results, we proposed that this
material is a new class of luminescent material suitable for
optoelectronics devices’ application, especially in light
emitting devices, electroluminescent devices and display
devices.
Keywords :
CdS quantum dot , Nd3+–Li+ co-doping , L-Arginine capping , Blue–violet emission
Journal title :
Astroparticle Physics