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Wojtek Wlodarski - One of the best experts on this subject based on the ideXlab platform.
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graphene like nano sheets for surface acoustic wave gas sensor applications
Chemical Physics Letters, 2009Co-Authors: R. Arsat, P. G. Spizziri, Scott Gilje, Richard Barry Kaner, Michael Breedon, Kourosh Kalantarzadeh, Mahnaz Shafiei, Wojtek WlodarskiAbstract:Abstract The gas sensing properties of graphene-like nano-sheets deposited on 36° YX lithium tantalate (LiTaO 3 ) surface acoustic wave (SAW) transducers are reported. The thin graphene-like nano-sheets were produced via the reduction of graphite oxide which was deposited on SAW interdigitated transducers (IDTs). Their sensing performance was assessed towards hydrogen (H 2 ) and carbon monoxide (CO) in a synthetic Air Carrier gas at room temperature (25 °C) and 40 °C. Raman and X-ray photoelectron spectroscopy (XPS) revealed that the deposited graphite oxide (GO) was not completely reduced creating small, graphitic nanocrystals ∼2.7 nm in size.
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Graphene-like nano-sheets for surface acoustic wave gas sensor applications
Chemical Physics Letters, 2009Co-Authors: R. Arsat, P. G. Spizziri, Scott Gilje, Mojtaba Shafiei, Richard Barry Kaner, Michael Breedon, Kourosh Kalantar-zadeh, Wojtek WlodarskiAbstract:The gas sensing properties of graphene-like nano-sheets deposited on 36° YX lithium tantalate (LiTaO3) surface acoustic wave (SAW) transducers are reported. The thin graphene-like nano-sheets were produced via the reduction of graphite oxide which was deposited on SAW interdigitated transducers (IDTs). Their sensing performance was assessed towards hydrogen (H2) and carbon monoxide (CO) in a synthetic Air Carrier gas at room temperature (25 °C) and 40 °C. Raman and X-ray photoelectron spectroscopy (XPS) revealed that the deposited graphite oxide (GO) was not completely reduced creating small, graphitic nanocrystals ∼2.7 nm in size. © 2008 Elsevier B.V.
R. Arsat - One of the best experts on this subject based on the ideXlab platform.
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graphene like nano sheets for surface acoustic wave gas sensor applications
Chemical Physics Letters, 2009Co-Authors: R. Arsat, P. G. Spizziri, Scott Gilje, Richard Barry Kaner, Michael Breedon, Kourosh Kalantarzadeh, Mahnaz Shafiei, Wojtek WlodarskiAbstract:Abstract The gas sensing properties of graphene-like nano-sheets deposited on 36° YX lithium tantalate (LiTaO 3 ) surface acoustic wave (SAW) transducers are reported. The thin graphene-like nano-sheets were produced via the reduction of graphite oxide which was deposited on SAW interdigitated transducers (IDTs). Their sensing performance was assessed towards hydrogen (H 2 ) and carbon monoxide (CO) in a synthetic Air Carrier gas at room temperature (25 °C) and 40 °C. Raman and X-ray photoelectron spectroscopy (XPS) revealed that the deposited graphite oxide (GO) was not completely reduced creating small, graphitic nanocrystals ∼2.7 nm in size.
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Graphene-like nano-sheets for surface acoustic wave gas sensor applications
Chemical Physics Letters, 2009Co-Authors: R. Arsat, P. G. Spizziri, Scott Gilje, Mojtaba Shafiei, Richard Barry Kaner, Michael Breedon, Kourosh Kalantar-zadeh, Wojtek WlodarskiAbstract:The gas sensing properties of graphene-like nano-sheets deposited on 36° YX lithium tantalate (LiTaO3) surface acoustic wave (SAW) transducers are reported. The thin graphene-like nano-sheets were produced via the reduction of graphite oxide which was deposited on SAW interdigitated transducers (IDTs). Their sensing performance was assessed towards hydrogen (H2) and carbon monoxide (CO) in a synthetic Air Carrier gas at room temperature (25 °C) and 40 °C. Raman and X-ray photoelectron spectroscopy (XPS) revealed that the deposited graphite oxide (GO) was not completely reduced creating small, graphitic nanocrystals ∼2.7 nm in size. © 2008 Elsevier B.V.
Scott Gilje - One of the best experts on this subject based on the ideXlab platform.
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graphene like nano sheets for surface acoustic wave gas sensor applications
Chemical Physics Letters, 2009Co-Authors: R. Arsat, P. G. Spizziri, Scott Gilje, Richard Barry Kaner, Michael Breedon, Kourosh Kalantarzadeh, Mahnaz Shafiei, Wojtek WlodarskiAbstract:Abstract The gas sensing properties of graphene-like nano-sheets deposited on 36° YX lithium tantalate (LiTaO 3 ) surface acoustic wave (SAW) transducers are reported. The thin graphene-like nano-sheets were produced via the reduction of graphite oxide which was deposited on SAW interdigitated transducers (IDTs). Their sensing performance was assessed towards hydrogen (H 2 ) and carbon monoxide (CO) in a synthetic Air Carrier gas at room temperature (25 °C) and 40 °C. Raman and X-ray photoelectron spectroscopy (XPS) revealed that the deposited graphite oxide (GO) was not completely reduced creating small, graphitic nanocrystals ∼2.7 nm in size.
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Graphene-like nano-sheets for surface acoustic wave gas sensor applications
Chemical Physics Letters, 2009Co-Authors: R. Arsat, P. G. Spizziri, Scott Gilje, Mojtaba Shafiei, Richard Barry Kaner, Michael Breedon, Kourosh Kalantar-zadeh, Wojtek WlodarskiAbstract:The gas sensing properties of graphene-like nano-sheets deposited on 36° YX lithium tantalate (LiTaO3) surface acoustic wave (SAW) transducers are reported. The thin graphene-like nano-sheets were produced via the reduction of graphite oxide which was deposited on SAW interdigitated transducers (IDTs). Their sensing performance was assessed towards hydrogen (H2) and carbon monoxide (CO) in a synthetic Air Carrier gas at room temperature (25 °C) and 40 °C. Raman and X-ray photoelectron spectroscopy (XPS) revealed that the deposited graphite oxide (GO) was not completely reduced creating small, graphitic nanocrystals ∼2.7 nm in size. © 2008 Elsevier B.V.
P. G. Spizziri - One of the best experts on this subject based on the ideXlab platform.
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graphene like nano sheets for surface acoustic wave gas sensor applications
Chemical Physics Letters, 2009Co-Authors: R. Arsat, P. G. Spizziri, Scott Gilje, Richard Barry Kaner, Michael Breedon, Kourosh Kalantarzadeh, Mahnaz Shafiei, Wojtek WlodarskiAbstract:Abstract The gas sensing properties of graphene-like nano-sheets deposited on 36° YX lithium tantalate (LiTaO 3 ) surface acoustic wave (SAW) transducers are reported. The thin graphene-like nano-sheets were produced via the reduction of graphite oxide which was deposited on SAW interdigitated transducers (IDTs). Their sensing performance was assessed towards hydrogen (H 2 ) and carbon monoxide (CO) in a synthetic Air Carrier gas at room temperature (25 °C) and 40 °C. Raman and X-ray photoelectron spectroscopy (XPS) revealed that the deposited graphite oxide (GO) was not completely reduced creating small, graphitic nanocrystals ∼2.7 nm in size.
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Graphene-like nano-sheets for surface acoustic wave gas sensor applications
Chemical Physics Letters, 2009Co-Authors: R. Arsat, P. G. Spizziri, Scott Gilje, Mojtaba Shafiei, Richard Barry Kaner, Michael Breedon, Kourosh Kalantar-zadeh, Wojtek WlodarskiAbstract:The gas sensing properties of graphene-like nano-sheets deposited on 36° YX lithium tantalate (LiTaO3) surface acoustic wave (SAW) transducers are reported. The thin graphene-like nano-sheets were produced via the reduction of graphite oxide which was deposited on SAW interdigitated transducers (IDTs). Their sensing performance was assessed towards hydrogen (H2) and carbon monoxide (CO) in a synthetic Air Carrier gas at room temperature (25 °C) and 40 °C. Raman and X-ray photoelectron spectroscopy (XPS) revealed that the deposited graphite oxide (GO) was not completely reduced creating small, graphitic nanocrystals ∼2.7 nm in size. © 2008 Elsevier B.V.
Michael Breedon - One of the best experts on this subject based on the ideXlab platform.
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graphene like nano sheets for surface acoustic wave gas sensor applications
Chemical Physics Letters, 2009Co-Authors: R. Arsat, P. G. Spizziri, Scott Gilje, Richard Barry Kaner, Michael Breedon, Kourosh Kalantarzadeh, Mahnaz Shafiei, Wojtek WlodarskiAbstract:Abstract The gas sensing properties of graphene-like nano-sheets deposited on 36° YX lithium tantalate (LiTaO 3 ) surface acoustic wave (SAW) transducers are reported. The thin graphene-like nano-sheets were produced via the reduction of graphite oxide which was deposited on SAW interdigitated transducers (IDTs). Their sensing performance was assessed towards hydrogen (H 2 ) and carbon monoxide (CO) in a synthetic Air Carrier gas at room temperature (25 °C) and 40 °C. Raman and X-ray photoelectron spectroscopy (XPS) revealed that the deposited graphite oxide (GO) was not completely reduced creating small, graphitic nanocrystals ∼2.7 nm in size.
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Graphene-like nano-sheets for surface acoustic wave gas sensor applications
Chemical Physics Letters, 2009Co-Authors: R. Arsat, P. G. Spizziri, Scott Gilje, Mojtaba Shafiei, Richard Barry Kaner, Michael Breedon, Kourosh Kalantar-zadeh, Wojtek WlodarskiAbstract:The gas sensing properties of graphene-like nano-sheets deposited on 36° YX lithium tantalate (LiTaO3) surface acoustic wave (SAW) transducers are reported. The thin graphene-like nano-sheets were produced via the reduction of graphite oxide which was deposited on SAW interdigitated transducers (IDTs). Their sensing performance was assessed towards hydrogen (H2) and carbon monoxide (CO) in a synthetic Air Carrier gas at room temperature (25 °C) and 40 °C. Raman and X-ray photoelectron spectroscopy (XPS) revealed that the deposited graphite oxide (GO) was not completely reduced creating small, graphitic nanocrystals ∼2.7 nm in size. © 2008 Elsevier B.V.