Atom-by-atom growth of cadmium sulfide thin films by electroreduction of aqueous Cd2+-SCN- complex
Citation
T. Yoshida et al., Atom-by-atom growth of cadmium sulfide thin films by electroreduction of aqueous Cd2+-SCN- complex, J ELEC CHEM, 473(1-2), 1999, pp. 209-216
Categorie Soggetti
Spectroscopy /Instrumentation/Analytical Sciences
Journal title
JOURNAL OF ELECTROANALYTICAL CHEMISTRY
Abstract
Electrodeposition of cadmium sulfide thin films was realized by the electro
reduction of the aqueous thiocyanato complex of Cd2+. Formation of CdS is s
upposed to proceed via metal-catalyzed ligand reduction. The film thickness
increased linearly with the electricity consumed, confirming the electroch
emical growth of CdS. The deposition bath was fairly stable and could be us
ed repeatedly to prepare many CdS films. While all the previously reported
techniques for the chemical or electrochemical growth of CdS thin films in
aqueous systems are accompanied by homogeneous chemical reactions to genera
te solid particles of CdS or S in the bulk of the solutions, the present te
chnique seems to be the only example to achieve purely electrochemical grow
th of CdS from a single solution. The resultant CdS thin film had a uniform
structure in which each grain was made up with single phase crystalline he
xagonal CdS. When the deposition was carried out on poly-crystalline Ni, th
e deposited CdS thin film showed a strong preferential orientation with the
c-axis perpendicular to the substrate surface, suggesting an epitaxial gro
wth of 6-fold planes of CdS onto Ni(1 1 1) planes in a (root 3 x root 3)R30
degrees structure, owing to their small lattice mismatch of 4.17%. (C) 199
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