2002•Max Planck Institute for Plasma PhysicsRequires access

Encyclopedia of Electrochemistry, Vol. 6: Semiconductor electrodes and Photoelectrochemistry

Stuart L. Licht, Allen J. Bard, M. Stratmann

Open publisher page 29 citations

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).

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What this paper is about

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).

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OpenAlex reports 29 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available 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).

Key concepts: Photoelectrochemistry, Photoelectrochemical cell, Semiconductor, Materials science, Electrochemical energy conversion, Photoelectrolysis, Water splitting, Solar cell

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Encyclopedia of Electrochemistry, Vol. 6: Semiconductor electrodes and Photoelectrochemistry — Research Paper | ScholarLens