Encyclopedia of Electrochemistry, Vol. 6: Semiconductor electrodes and Photoelectrochemistry
Stuart L. Licht, Allen J. Bard, M. Stratmann
Abstract
Stuart L. Licht, Allen J. Bard, M. Stratmann
Abstract
The following topics were dealt with: 1. Fundamentals of semiconductor electrochemistry and photoelectrochemistry; 2. Experimental techniques (Photoelectrochemical systems characterization; Grafting molecular properties onto semiconductor surfaces; Capacitance, luminescence, and related optical techniques); 3. Semiconductor nanostructure; 4. Solar energy conversion without dye sensitization (Photoelectrochemical solar energy storage cells; Solar photoelectrochemical generation of hydrogen fuel); 5. Dye-sensitized photoelectrochenmistry (Dye-sensitized regenerative solar cells; Dyes for semiconductor sensitization; solid-state dye-sensitized solar cells); 6. Nonsolar energy applications (Photocatalysis; Silverless Photography; Photoelectrochemical etching).
OpenAlex reports 29 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The following topics were dealt with: 1. Fundamentals of semiconductor electrochemistry and photoelectrochemistry; 2. Experimental techniques (Photoelectrochemical systems characterization; Grafting molecular properties onto semiconductor surfaces; Capacitance, luminescence, and related optical techniques); 3. Semiconductor nanostructure; 4. Solar energy conversion without dye sensitization (Photoelectrochemical solar energy storage cells; Solar photoelectrochemical generation of hydrogen fuel); 5. Dye-sensitized photoelectrochenmistry (Dye-sensitized regenerative solar cells; Dyes for semiconductor sensitization; solid-state dye-sensitized solar cells); 6. Nonsolar energy applications (Photocatalysis; Silverless Photography; Photoelectrochemical etching).
Key concepts: Photoelectrochemistry, Photoelectrochemical cell, Semiconductor, Materials science, Electrochemical energy conversion, Photoelectrolysis, Water splitting, Solar cell