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TY - JOUR
AU - Krishna ratnam3 and Chidambaradhanu4, S. Ganapathy Raman1, P. Selvarajan2*,
PY - 2010/11/27
Y2 - 2025/09/23
TI - Studies of Cadmium Selenide (CdSe) Nanoparticles Synthesized by Solvo-thermal Route
JF - Recent Research in Science and Technology
JA - RRST
VL - 2
IS - 10
SE - Physics
DO -
UR - https://www.updatepublishing.com/journal/index.php/rrst/article/view/530
SP -
AB - <p class="MsoNormal" style="line-height: normal; text-indent: 0in; margin: 0in 0in 0pt; tab-stops: center 2.75in right 5.5in left 6.25in;"><span style="font-family: ";Arial Narrow";,";sans-serif";; color: black; font-size: 10pt;">Synthesis of nanoparticles of Cadmium Selenide(CdSe)<span style="mso-spacerun: yes;">Â </span>was carried out by using a microwave oven. Cadmium chloride and sodium selenite were used as the precursor materials<span style="mso-spacerun: yes;">Â </span>to prepare CdSe nanoparticles. Ethylene glycol was used as the capping agent to control the size of the nanoparticles.<span style="mso-spacerun: yes;">Â </span>Powder XRD pattern reveals the crystal structure of the prepared CdSe nanoparticles. The average particle size of the sample was found to be 54 nm. The morphology of the sample was studied by<span style="mso-spacerun: yes;">Â Â </span>a SEM. UV-vis absorption spectrum for prepared CdSe sample was recorded. Dielectric studies were carried out for the pelltized sample of CdSe nanoparticles and AC conductivity and DC conductivity<span style="mso-spacerun: yes;">Â Â </span>values have been measured. The obtained<span style="mso-spacerun: yes;">Â Â </span>results are discussed. </span></p>
ER -