Cupric Oxide (CuO) is one of the p-type metal oxide semiconductors that are suitable for use in gas sensing device. The copper oxide thin film was prepared on silicon wafer by sputtering of pure copper target at difference deposition time of 5 min, 10 min and 15 min using RF magnetron sputtering technique. Argon flow rate, oxygen flow rate, RF power and working pressure were fixed at 50 sccm, 8 sccm, 400 W and 22.5 mTorr, respectively. The influence of the deposition time towards the surface morphology, topography and thickness has been investigated. SEM and AFM analysis showed that the grain size of the films increases with the increase of deposition time. However, the surface structure of the films remains the same. In addition, it is not...
Thin films of copper oxide were grown by radio frequency-magnetron sputtering in an oxygen-argon env...
Copper oxide (CuO) thin films were deposited on well cleaned glass substrates by spray pyrolysis tec...
International audienceThe preparation of oxide and/or nanocomposite thin films can lead to devices w...
AbstractRadio-frequency magnetron sputtering using a Cu target was used to deposit cuprous oxide and...
High-quality copper oxide (CuO) thin films were deposited on the silicon (Si) substrate at the room ...
Copper oxide gas sensor was prepared on silicon wafer by sputtering of copper target at different ox...
Copper Oxide (CuO) thin films were deposited on conductive glass substrates using DC reactive sputte...
International audienceBinary copper oxide (Cu2O, Cu4O3 and CuO) thin films have been selectively dep...
AbstractCuprous oxide and cupric oxide thin films were deposited on silicon wafer with additional su...
Copper oxide thin films are grown by reactive magnetron sputter deposition. To define the parameter ...
Black copper oxide thin films with high solar absorptance (α), high thermal emittance (ε), low diffu...
Cupric oxide (CuO) thin films were prepared on a glass and silicon (Si) substrates by radio frequenc...
Abstract: Copper-oxide (CuO) thin films were prepared by reactive sputtering of Cu onto Si wafers an...
Cu2O thin films have been deposited using reactive dc magnetron sputtering technique using an Edward...
Single phase cuprous oxide (Cu2O) thin films were deposited on TiN substrate with radio frequency sp...
Thin films of copper oxide were grown by radio frequency-magnetron sputtering in an oxygen-argon env...
Copper oxide (CuO) thin films were deposited on well cleaned glass substrates by spray pyrolysis tec...
International audienceThe preparation of oxide and/or nanocomposite thin films can lead to devices w...
AbstractRadio-frequency magnetron sputtering using a Cu target was used to deposit cuprous oxide and...
High-quality copper oxide (CuO) thin films were deposited on the silicon (Si) substrate at the room ...
Copper oxide gas sensor was prepared on silicon wafer by sputtering of copper target at different ox...
Copper Oxide (CuO) thin films were deposited on conductive glass substrates using DC reactive sputte...
International audienceBinary copper oxide (Cu2O, Cu4O3 and CuO) thin films have been selectively dep...
AbstractCuprous oxide and cupric oxide thin films were deposited on silicon wafer with additional su...
Copper oxide thin films are grown by reactive magnetron sputter deposition. To define the parameter ...
Black copper oxide thin films with high solar absorptance (α), high thermal emittance (ε), low diffu...
Cupric oxide (CuO) thin films were prepared on a glass and silicon (Si) substrates by radio frequenc...
Abstract: Copper-oxide (CuO) thin films were prepared by reactive sputtering of Cu onto Si wafers an...
Cu2O thin films have been deposited using reactive dc magnetron sputtering technique using an Edward...
Single phase cuprous oxide (Cu2O) thin films were deposited on TiN substrate with radio frequency sp...
Thin films of copper oxide were grown by radio frequency-magnetron sputtering in an oxygen-argon env...
Copper oxide (CuO) thin films were deposited on well cleaned glass substrates by spray pyrolysis tec...
International audienceThe preparation of oxide and/or nanocomposite thin films can lead to devices w...