Investigation of the Expansion of an Oxygen Microwave Remote Plasma for the Growth of Functional Oxide Thin Films

dc.contributor.authorAl Makdessi, Georges
dc.contributor.authorTabbal, Malek
dc.contributor.departmentDepartment of Physics
dc.contributor.facultyFaculty of Arts and Sciences (FAS)
dc.contributor.institutionAmerican University of Beirut
dc.date.accessioned2025-01-24T11:25:06Z
dc.date.available2025-01-24T11:25:06Z
dc.date.issued2017
dc.description.abstractThe expansion of an oxygen low-pressure microwave plasma was investigated in order to determine the optimal plasma parameters for the growth of functional oxide semiconductors. Langmuir probe measurements show that the electron density (ne) increases with the injected power up to a saturation value of 3.0 × 109 cm−3 determined at 10 mTorr while electron temperature (Te) remains constant at a value of 1.5 eV. When pressure is varied, ne shows a maximum value at a range from 12 to 20 mTorr while Te decreases monotonously with increasing pressure. In addition, both ne and Te decrease with the axial distance from the plasma source. These effects were discussed through the loss mechanisms in the remote plasma. For a pressure of 13 mTorr and at a substrate temperature of 500 °C, plasma enhanced oxidation of pure metallic Ti thin films lead to the formation of a pure TiO2 anatase phase compared to a mixed phase of TiO2 and TiO in the absence of plasma activation. For Mn thin films, the exposure to oxygen remote plasma led to the formation of MnO2 as opposed to obtaining Mn3O4 when oxidation is performed in the oxygen gas ambient. Remote plasma processing was thus found to provide selective pathways to control oxidation states, stoichiometry and phase composition of technologically attractive oxide thin films. © 2016, Springer Science+Business Media New York.
dc.identifier.doihttps://doi.org/10.1007/s11090-016-9757-7
dc.identifier.eid2-s2.0-84992723807
dc.identifier.urihttp://hdl.handle.net/10938/26206
dc.language.isoen
dc.publisherSpringer New York LLC
dc.relation.ispartofPlasma Chemistry and Plasma Processing
dc.sourceScopus
dc.subjectLangmuir probe
dc.subjectManganese oxide
dc.subjectPlasma expansion
dc.subjectRemote plasma oxidation
dc.subjectTitanium oxide
dc.subjectExpansion
dc.subjectLangmuir probes
dc.subjectOxidation
dc.subjectOxide films
dc.subjectOxide semiconductors
dc.subjectOxygen
dc.subjectPlasma devices
dc.subjectSemiconductor growth
dc.subjectTellurium
dc.subjectTitanium dioxide
dc.subjectTitanium oxides
dc.subjectControl oxidation
dc.subjectFunctional oxides
dc.subjectLangmuir probe measurements
dc.subjectRemote plasma processing
dc.subjectRemote plasmas
dc.subjectSaturation values
dc.subjectSubstrate temperature
dc.subjectThin films
dc.titleInvestigation of the Expansion of an Oxygen Microwave Remote Plasma for the Growth of Functional Oxide Thin Films
dc.typeArticle

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