Synthesis of mixed-phase titania films by low-temperature ultrasonic spray pyrolysis
Fully dense TiO 2 films with (1) mixed-phase rutile and anatase and (2) anatase (sole phase) were deposited on fused quartz substrates by ultrasonic spray pyrolysis at nominally 400 °C. The presence and absence of insulation around the entrainment pathway traversing 20 cm above the substrate/hot pla...
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Published in | Materials letters Vol. 64; no. 12; pp. 1365 - 1368 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
30.06.2010
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Abstract | Fully dense TiO
2 films with (1) mixed-phase rutile and anatase and (2) anatase (sole phase) were deposited on fused quartz substrates by ultrasonic spray pyrolysis at nominally 400
°C. The presence and absence of insulation around the entrainment pathway traversing 20
cm above the substrate/hot plate were investigated (174
°C
vs 122
°C). The thick films were assessed in terms of mineralogies (qualitative and quantitative), microstructures (topography, thickness and grain size), and visible light transmission (optical and microstructural considerations). With insulation, opaque mixed anatase (∼
30
vol.%; <
50
nm) and rutile (∼
70
vol.%; ∼
1
μm) were observed; without insulation, only transparent anatase (<
50
nm) was observed. |
---|---|
AbstractList | Fully dense TiO2 films with (1) mixed-phase rutile and anatase and (2) anatase (sole phase) were deposited on fused quartz substrates by ultrasonic spray pyrolysis at nominally 400A degree C. The presence and absence of insulation around the entrainment pathway traversing 20cm above the substrate/hot plate were investigated (174A degree C vs 122A degree C). The thick films were assessed in terms of mineralogies (qualitative and quantitative), microstructures (topography, thickness and grain size), and visible light transmission (optical and microstructural considerations). With insulation, opaque mixed anatase (a arrow right 430vol.%; <50nm) and rutile (a arrow right 470vol.%; a arrow right 41I14m) were observed; without insulation, only transparent anatase (<50nm) was observed. Fully dense TiO 2 films with (1) mixed-phase rutile and anatase and (2) anatase (sole phase) were deposited on fused quartz substrates by ultrasonic spray pyrolysis at nominally 400 °C. The presence and absence of insulation around the entrainment pathway traversing 20 cm above the substrate/hot plate were investigated (174 °C vs 122 °C). The thick films were assessed in terms of mineralogies (qualitative and quantitative), microstructures (topography, thickness and grain size), and visible light transmission (optical and microstructural considerations). With insulation, opaque mixed anatase (∼ 30 vol.%; < 50 nm) and rutile (∼ 70 vol.%; ∼ 1 μm) were observed; without insulation, only transparent anatase (< 50 nm) was observed. |
Author | Nakaruk, A. Kavei, G. Sorrell, C.C. |
Author_xml | – sequence: 1 givenname: A. surname: Nakaruk fullname: Nakaruk, A. organization: School of Materials Science and Engineering, University of New South Wales Sydney, NSW 2052, Australia – sequence: 2 givenname: G. surname: Kavei fullname: Kavei, G. organization: School of Materials Science and Engineering, University of New South Wales Sydney, NSW 2052, Australia – sequence: 3 givenname: C.C. surname: Sorrell fullname: Sorrell, C.C. email: C.Sorrell@unsw.edu.au organization: School of Materials Science and Engineering, University of New South Wales Sydney, NSW 2052, Australia |
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Keywords | Ultrasonic spray pyrolysis Glancing angle X-ray diffraction Titanium dioxide Thin film |
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Snippet | Fully dense TiO
2 films with (1) mixed-phase rutile and anatase and (2) anatase (sole phase) were deposited on fused quartz substrates by ultrasonic spray... Fully dense TiO2 films with (1) mixed-phase rutile and anatase and (2) anatase (sole phase) were deposited on fused quartz substrates by ultrasonic spray... |
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SubjectTerms | Anatase Deposition Glancing angle X-ray diffraction Grain size Insulation Microstructure Rutile Spray pyrolysis Thin film Titanium dioxide Topography Ultrasonic spray pyrolysis |
Title | Synthesis of mixed-phase titania films by low-temperature ultrasonic spray pyrolysis |
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