Publication | Open Access
Metal assisted photochemical etching of 4H silicon carbide
23
Citations
32
References
2017
Year
Materials EngineeringMaterials ScienceChemical EngineeringEngineeringElectrochemical Surface ScienceNanomanufacturingSurface ScienceCarbidePhoto-electrochemical CellChemistryPhotochemical EtchingFormation ProcessPlasma EtchingOptoelectronicsAbstract MetalElectrochemistryPhotoelectrochemistry
Abstract Metal assisted photochemical etching (MAPCE) of 4H–silicon carbide (SiC) in Na 2 S 2 O 8 /HF and H 2 O 2 /HF aqueous solutions is investigated with platinum as metallic cathode. The formation process of the resulting porous layer is studied with respect to etching time, concentration and type of oxidizing agent. From the experiments it is concluded that the porous layer formation is due to electron hole pairs generated in the semiconductor, which stem from UV light irradiation. The generated holes are consumed during the oxidation of 4H–SiC and the formed oxide is dissolved by HF. To maintain charge balance, the oxidizing agent has to take up electrons at the Pt/etching solution interface. Total dissolution of the porous layers is achieved when the oxidizing agent concentration decreases during MAPCE. In combination with standard photolithography, the definition of porous regions is possible. Furthermore chemical micromachining of 4 H–SiC at room temperature is possible.
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