Handbook of Semiconductor ElectrodepositionAiming to bridge the gap in understanding between professional electrochemists and hard-core semiconductor physicists and material scientists, this book examines the science and technology of semiconductor electrode-positioning. Summarizing state-of-the-art information concerning a wide variety of semiconductors, it reviews fundamental electrodeposition concepts and terminology. |
Contents
Basic Concepts | 1 |
Theory of Compound Semiconductor | 27 |
Transport Effects Due to Convective Diffusion | 33 |
Considerations | 43 |
Nucleation and Growth | 61 |
Electrodeposition Techniques Practical Aspects | 89 |
Characterization of Electrodeposits | 123 |
Important Ex Situ Techniques for Characterizing | 171 |
Electrodeposition of Elemental Semiconductors | 193 |
Electrodeposition of Binary Semiconductors | 205 |
Electrodeposition of Ternary Semiconductors | 239 |
Appendixes | 251 |
Properties of Some Selected Semiconductor Materials | 261 |
| 267 | |
| 285 | |
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Common terms and phrases
acidic bath activity adatoms adsorbed adsorption alloy annealing anodic aqueous atoms band gap bath containing Bethune and Loud Bockris bulk Butler-Volmer equation cadmium capacitance carrier cathodic Cd2+ CdSe CdTe charge transfer chemical complex composition compound semiconductors concentration constant crystal CuInSe2 current density cyclic voltammetry dendritic deposition potential diffusion layer double layer elec electrochemical electrode potential electrode surface electrodeposition electrodeposition process electrolyte elemental employed epitaxial equilibrium exchange current density Figure films formation free energy frequency galvanostatic growth hydrogen impedance interface ionic species ions j₁ kinetics Latimer mA/cm² melt metal molten salt morphology Nernst equation nonaqueous nucleation nuclei obtained optical overpotential oxide Pandey phase plot potentiostatic pulse reaction reference electrode reported Schematic selenium semiconductor electrodeposition shown in Fig silicon solar cells solution solvent spectroscopy steady-state step stoichiometry studies substrate technique tellurium temperature thickness transport trodeposition voltage X-ray
Popular passages
Page 282 - Shay, JL, and Wernick, JH (1975). Ternary Chalcopyrite Semiconductors: Growth, Electronic Properties, and Applications.


