This brief article reports on the fabrication of a prototype novel semiconductor digital device, a microwave-discharge light-emitting diode (MDLED), consisting of an LED and a Schottky barrier diode encapsulated in a quartz ampoule. Coating the surface of this ampoule with TiO yielded a new photocatalytic TiO unit (MDLED-TiO) for use in treating contaminated wastewaters. To the extent that this MDLED-TiO is driven only by microwave energy, there is no need for electric wires or electrical AC power. As much of the activity of TiO photocatalyst is enhanced and ultraviolet light emission is generated only by irradiating with microwaves, the MDLED-TiO affords a simple water treatment device as demonstrated in the present study. The digital device consisted of 14 pieces of MDLED-TiO units immersed into a model contaminated wastewater toward the decomposition of organic pollutants and sterilization of natural bacteria-contaminated wastewaters performed in an energy-saving manner simply by irradiating the wastewaters with microwaves.
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http://dx.doi.org/10.1007/s43630-021-00118-7 | DOI Listing |
Photochem Photobiol Sci
May 2022
PhotoGreen Laboratory, Dipartimento Di Chimica, Università Di Pavia, via Taramelli 12, 27100, Pavia, Italy.
This brief article reports on the fabrication of a prototype novel semiconductor digital device, a microwave-discharge light-emitting diode (MDLED), consisting of an LED and a Schottky barrier diode encapsulated in a quartz ampoule. Coating the surface of this ampoule with TiO yielded a new photocatalytic TiO unit (MDLED-TiO) for use in treating contaminated wastewaters. To the extent that this MDLED-TiO is driven only by microwave energy, there is no need for electric wires or electrical AC power.
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