The Experts below are selected from a list of 5388 Experts worldwide ranked by ideXlab platform

Ivan P Parkin - One of the best experts on this subject based on the ideXlab platform.

  • combinatorial atmospheric pressure chemical vapor deposition of graded tio2 vo2 mixed phase composites and their dual functional property as self cleaning and photochromic window coatings
    ACS Combinatorial Science, 2013
    Co-Authors: Mia Wilkinson, Andreas Kafizas, Salem M Bawaked, Abdullah Y Obaid, Shaeel A Althabaiti, Sulaiman N Basahel, Claire J Carmalt, Ivan P Parkin
    Abstract:

    A combinatorial film with a phase gradient from V:TiO2 (V: Ti ≥ 0.08), through a range of TiO2–VO2 composites, to a vanadium-rich composite (V: Ti = 1.81) was grown by combinatorial atmospheric pressure chemical vapor deposition (cAPCVD). The film was grown from the reaction of TiCl4, VCl4, ethyl acetate (EtAc), and H2O at 550 °C on glass. The gradient in gas mixtures across the reactor induced compositional film growth, producing a single film with numerous phases and compositions at different positions. Seventeen unique positions distributed evenly along a central Horizontal Strip were investigated. The physical properties were characterized by wavelength dispersive X-ray (WDX) analysis, X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and UV–visible spectroscopy. The functional properties examined included the degree of photoinduced hydrophilicity (PIH), UVC-photocatalysis, and thermochromism. Superhydrophilic contact angles could be achieved at all positions, even withi...

  • combinatorial atmospheric pressure chemical vapor deposition of graded tio2 vo2 mixed phase composites and their dual functional property as self cleaning and photochromic window coatings
    ACS Combinatorial Science, 2013
    Co-Authors: Mia Wilkinson, Andreas Kafizas, Salem M Bawaked, Abdullah Y Obaid, Shaeel A Althabaiti, Sulaiman N Basahel, Claire J Carmalt, Ivan P Parkin
    Abstract:

    A combinatorial film with a phase gradient from V:TiO2 (V: Ti ≥ 0.08), through a range of TiO2–VO2 composites, to a vanadium-rich composite (V: Ti = 1.81) was grown by combinatorial atmospheric pressure chemical vapor deposition (cAPCVD). The film was grown from the reaction of TiCl4, VCl4, ethyl acetate (EtAc), and H2O at 550 °C on glass. The gradient in gas mixtures across the reactor induced compositional film growth, producing a single film with numerous phases and compositions at different positions. Seventeen unique positions distributed evenly along a central Horizontal Strip were investigated. The physical properties were characterized by wavelength dispersive X-ray (WDX) analysis, X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and UV–visible spectroscopy. The functional properties examined included the degree of photoinduced hydrophilicity (PIH), UVC-photocatalysis, and thermochromism. Superhydrophilic contact angles could be achieved at all positions, even withi...

Mia Wilkinson - One of the best experts on this subject based on the ideXlab platform.

  • combinatorial atmospheric pressure chemical vapor deposition of graded tio2 vo2 mixed phase composites and their dual functional property as self cleaning and photochromic window coatings
    ACS Combinatorial Science, 2013
    Co-Authors: Mia Wilkinson, Andreas Kafizas, Salem M Bawaked, Abdullah Y Obaid, Shaeel A Althabaiti, Sulaiman N Basahel, Claire J Carmalt, Ivan P Parkin
    Abstract:

    A combinatorial film with a phase gradient from V:TiO2 (V: Ti ≥ 0.08), through a range of TiO2–VO2 composites, to a vanadium-rich composite (V: Ti = 1.81) was grown by combinatorial atmospheric pressure chemical vapor deposition (cAPCVD). The film was grown from the reaction of TiCl4, VCl4, ethyl acetate (EtAc), and H2O at 550 °C on glass. The gradient in gas mixtures across the reactor induced compositional film growth, producing a single film with numerous phases and compositions at different positions. Seventeen unique positions distributed evenly along a central Horizontal Strip were investigated. The physical properties were characterized by wavelength dispersive X-ray (WDX) analysis, X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and UV–visible spectroscopy. The functional properties examined included the degree of photoinduced hydrophilicity (PIH), UVC-photocatalysis, and thermochromism. Superhydrophilic contact angles could be achieved at all positions, even withi...

  • combinatorial atmospheric pressure chemical vapor deposition of graded tio2 vo2 mixed phase composites and their dual functional property as self cleaning and photochromic window coatings
    ACS Combinatorial Science, 2013
    Co-Authors: Mia Wilkinson, Andreas Kafizas, Salem M Bawaked, Abdullah Y Obaid, Shaeel A Althabaiti, Sulaiman N Basahel, Claire J Carmalt, Ivan P Parkin
    Abstract:

    A combinatorial film with a phase gradient from V:TiO2 (V: Ti ≥ 0.08), through a range of TiO2–VO2 composites, to a vanadium-rich composite (V: Ti = 1.81) was grown by combinatorial atmospheric pressure chemical vapor deposition (cAPCVD). The film was grown from the reaction of TiCl4, VCl4, ethyl acetate (EtAc), and H2O at 550 °C on glass. The gradient in gas mixtures across the reactor induced compositional film growth, producing a single film with numerous phases and compositions at different positions. Seventeen unique positions distributed evenly along a central Horizontal Strip were investigated. The physical properties were characterized by wavelength dispersive X-ray (WDX) analysis, X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and UV–visible spectroscopy. The functional properties examined included the degree of photoinduced hydrophilicity (PIH), UVC-photocatalysis, and thermochromism. Superhydrophilic contact angles could be achieved at all positions, even withi...

Claire J Carmalt - One of the best experts on this subject based on the ideXlab platform.

  • combinatorial atmospheric pressure chemical vapor deposition of graded tio2 vo2 mixed phase composites and their dual functional property as self cleaning and photochromic window coatings
    ACS Combinatorial Science, 2013
    Co-Authors: Mia Wilkinson, Andreas Kafizas, Salem M Bawaked, Abdullah Y Obaid, Shaeel A Althabaiti, Sulaiman N Basahel, Claire J Carmalt, Ivan P Parkin
    Abstract:

    A combinatorial film with a phase gradient from V:TiO2 (V: Ti ≥ 0.08), through a range of TiO2–VO2 composites, to a vanadium-rich composite (V: Ti = 1.81) was grown by combinatorial atmospheric pressure chemical vapor deposition (cAPCVD). The film was grown from the reaction of TiCl4, VCl4, ethyl acetate (EtAc), and H2O at 550 °C on glass. The gradient in gas mixtures across the reactor induced compositional film growth, producing a single film with numerous phases and compositions at different positions. Seventeen unique positions distributed evenly along a central Horizontal Strip were investigated. The physical properties were characterized by wavelength dispersive X-ray (WDX) analysis, X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and UV–visible spectroscopy. The functional properties examined included the degree of photoinduced hydrophilicity (PIH), UVC-photocatalysis, and thermochromism. Superhydrophilic contact angles could be achieved at all positions, even withi...

  • combinatorial atmospheric pressure chemical vapor deposition of graded tio2 vo2 mixed phase composites and their dual functional property as self cleaning and photochromic window coatings
    ACS Combinatorial Science, 2013
    Co-Authors: Mia Wilkinson, Andreas Kafizas, Salem M Bawaked, Abdullah Y Obaid, Shaeel A Althabaiti, Sulaiman N Basahel, Claire J Carmalt, Ivan P Parkin
    Abstract:

    A combinatorial film with a phase gradient from V:TiO2 (V: Ti ≥ 0.08), through a range of TiO2–VO2 composites, to a vanadium-rich composite (V: Ti = 1.81) was grown by combinatorial atmospheric pressure chemical vapor deposition (cAPCVD). The film was grown from the reaction of TiCl4, VCl4, ethyl acetate (EtAc), and H2O at 550 °C on glass. The gradient in gas mixtures across the reactor induced compositional film growth, producing a single film with numerous phases and compositions at different positions. Seventeen unique positions distributed evenly along a central Horizontal Strip were investigated. The physical properties were characterized by wavelength dispersive X-ray (WDX) analysis, X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and UV–visible spectroscopy. The functional properties examined included the degree of photoinduced hydrophilicity (PIH), UVC-photocatalysis, and thermochromism. Superhydrophilic contact angles could be achieved at all positions, even withi...

Andreas Kafizas - One of the best experts on this subject based on the ideXlab platform.

  • combinatorial atmospheric pressure chemical vapor deposition of graded tio2 vo2 mixed phase composites and their dual functional property as self cleaning and photochromic window coatings
    ACS Combinatorial Science, 2013
    Co-Authors: Mia Wilkinson, Andreas Kafizas, Salem M Bawaked, Abdullah Y Obaid, Shaeel A Althabaiti, Sulaiman N Basahel, Claire J Carmalt, Ivan P Parkin
    Abstract:

    A combinatorial film with a phase gradient from V:TiO2 (V: Ti ≥ 0.08), through a range of TiO2–VO2 composites, to a vanadium-rich composite (V: Ti = 1.81) was grown by combinatorial atmospheric pressure chemical vapor deposition (cAPCVD). The film was grown from the reaction of TiCl4, VCl4, ethyl acetate (EtAc), and H2O at 550 °C on glass. The gradient in gas mixtures across the reactor induced compositional film growth, producing a single film with numerous phases and compositions at different positions. Seventeen unique positions distributed evenly along a central Horizontal Strip were investigated. The physical properties were characterized by wavelength dispersive X-ray (WDX) analysis, X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and UV–visible spectroscopy. The functional properties examined included the degree of photoinduced hydrophilicity (PIH), UVC-photocatalysis, and thermochromism. Superhydrophilic contact angles could be achieved at all positions, even withi...

  • combinatorial atmospheric pressure chemical vapor deposition of graded tio2 vo2 mixed phase composites and their dual functional property as self cleaning and photochromic window coatings
    ACS Combinatorial Science, 2013
    Co-Authors: Mia Wilkinson, Andreas Kafizas, Salem M Bawaked, Abdullah Y Obaid, Shaeel A Althabaiti, Sulaiman N Basahel, Claire J Carmalt, Ivan P Parkin
    Abstract:

    A combinatorial film with a phase gradient from V:TiO2 (V: Ti ≥ 0.08), through a range of TiO2–VO2 composites, to a vanadium-rich composite (V: Ti = 1.81) was grown by combinatorial atmospheric pressure chemical vapor deposition (cAPCVD). The film was grown from the reaction of TiCl4, VCl4, ethyl acetate (EtAc), and H2O at 550 °C on glass. The gradient in gas mixtures across the reactor induced compositional film growth, producing a single film with numerous phases and compositions at different positions. Seventeen unique positions distributed evenly along a central Horizontal Strip were investigated. The physical properties were characterized by wavelength dispersive X-ray (WDX) analysis, X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and UV–visible spectroscopy. The functional properties examined included the degree of photoinduced hydrophilicity (PIH), UVC-photocatalysis, and thermochromism. Superhydrophilic contact angles could be achieved at all positions, even withi...

Salem M Bawaked - One of the best experts on this subject based on the ideXlab platform.

  • combinatorial atmospheric pressure chemical vapor deposition of graded tio2 vo2 mixed phase composites and their dual functional property as self cleaning and photochromic window coatings
    ACS Combinatorial Science, 2013
    Co-Authors: Mia Wilkinson, Andreas Kafizas, Salem M Bawaked, Abdullah Y Obaid, Shaeel A Althabaiti, Sulaiman N Basahel, Claire J Carmalt, Ivan P Parkin
    Abstract:

    A combinatorial film with a phase gradient from V:TiO2 (V: Ti ≥ 0.08), through a range of TiO2–VO2 composites, to a vanadium-rich composite (V: Ti = 1.81) was grown by combinatorial atmospheric pressure chemical vapor deposition (cAPCVD). The film was grown from the reaction of TiCl4, VCl4, ethyl acetate (EtAc), and H2O at 550 °C on glass. The gradient in gas mixtures across the reactor induced compositional film growth, producing a single film with numerous phases and compositions at different positions. Seventeen unique positions distributed evenly along a central Horizontal Strip were investigated. The physical properties were characterized by wavelength dispersive X-ray (WDX) analysis, X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and UV–visible spectroscopy. The functional properties examined included the degree of photoinduced hydrophilicity (PIH), UVC-photocatalysis, and thermochromism. Superhydrophilic contact angles could be achieved at all positions, even withi...

  • combinatorial atmospheric pressure chemical vapor deposition of graded tio2 vo2 mixed phase composites and their dual functional property as self cleaning and photochromic window coatings
    ACS Combinatorial Science, 2013
    Co-Authors: Mia Wilkinson, Andreas Kafizas, Salem M Bawaked, Abdullah Y Obaid, Shaeel A Althabaiti, Sulaiman N Basahel, Claire J Carmalt, Ivan P Parkin
    Abstract:

    A combinatorial film with a phase gradient from V:TiO2 (V: Ti ≥ 0.08), through a range of TiO2–VO2 composites, to a vanadium-rich composite (V: Ti = 1.81) was grown by combinatorial atmospheric pressure chemical vapor deposition (cAPCVD). The film was grown from the reaction of TiCl4, VCl4, ethyl acetate (EtAc), and H2O at 550 °C on glass. The gradient in gas mixtures across the reactor induced compositional film growth, producing a single film with numerous phases and compositions at different positions. Seventeen unique positions distributed evenly along a central Horizontal Strip were investigated. The physical properties were characterized by wavelength dispersive X-ray (WDX) analysis, X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and UV–visible spectroscopy. The functional properties examined included the degree of photoinduced hydrophilicity (PIH), UVC-photocatalysis, and thermochromism. Superhydrophilic contact angles could be achieved at all positions, even withi...