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‫المؤتمر الدولي الثاني‬
                  ‫للعلوم األساسية والتطبيقية‬
         The Second International Conference on
               Basic and Applied Sciences
                       Oct 9 – 11, 2012


Macro-porous TiO2-P25 composite thick film for
         photocatalytic applications
                                  Institute for Materials & Surface
     Dr. Hazem Falah Sakeek               Technology (IMST)
     Department of Physics                Kiel – Germany

     Al-Azhar University - Gaza         Sponsored by DAAD
The objectives of this research work are:

   (1) to use sol-gel technique to produce a macro-porous
    TiO2-P25 composite films.

   (2) to evaluate the photocatalytic activity of the fabricated
    TiO2-P25 composite films.




    Dr. Hazem Falah Sakeek                                          2
Introduction
Environmental contamination, which is growing around the
world or in our daily life, is a serious social problem not to be
neglected.
Examples of such contamination can be endlessly listed as
follows:
   — Water pollution caused by industrial and household wastes
   — Respiratory diseases caused by air pollutants such as SOx or
    NOx
   — Room air contamination caused by organic compounds
    emerging from newly developed building materials




    Dr. Hazem Falah Sakeek                                           3
Solution for the Environmental contamination

   The fact that using energy to eliminate such environmental
    contamination increases emission of CO2 resulting in more global
    warming, however, leads us to a dilemma not to use energy to
    achieve our anti-pollution goal.

   We need a new method that can gently harmonize the contaminated
    environment to restore original conditions by using natural energy.

   One solution to that problem is, Photo-catalyst.




    Dr. Hazem Falah Sakeek                                                4
What is a photo-catalysts?
   Catalyst is a substance that makes a chemical reaction more likely to happen by
    reducing the activation energy needed to start it.
   A catalyst speed up a chemical reaction or make it happen at a lower temperature.
    Once the reaction has finished, the catalyst isn't used up.
   Photocatalysis means light is involved in making a catalyst do its job. In other
    words, light provides the energy that allows the catalyst to work.




    Dr. Hazem Falah Sakeek                                                              5
Dr. Hazem Falah Sakeek   6
The function of the photo-catalyst are:


        Anti-           Purifying
       bacteria          water



                               Preventing
 Deodorizing                 contamination
                             (Sterilization)


                Purifying
                 the air
               (dissolving
                  NOx)



     Dr. Hazem Falah Sakeek                    8
Thin-film Photocatalyst
In order to use TiO2 as an effective photocatalyst for the
above mentioned applications, powder is not an appropriate
form, because it may be blown off by wind or washed out by
water, and when used to purify water, it has to be separated
from the water. Thus, a method to fix the powder is required.




    Dr. Hazem Falah Sakeek                                      10
Film Preperation
Material Used                        Method
    Titanium (IV) Isopropoxide,        Films prepared by spin-coating at
                                         3000rpm for 20s on a glass
    Diethanolamine (DEA) as a
                                         substrate. And annealed at 400oC
     stabilizing agent,
                                         for 10min.
    Nanocrystalline TiO2 Titanium
     Powder P25, used as filler
    Acetyl acetone,
    Ethanol,
    Polyethylene glycol (PEG 400)
     used as a surfactant.




    Dr. Hazem Falah Sakeek                                                   11
Characterization
   XRD
   SEM
   Optical Properties Measurements for
    the films
   UV-Visible Absorption of MO for
    Photocatalyst activity.




    Dr. Hazem Falah Sakeek                12
XRD Spectra for TiO2, P25 Thin films




       XRD patterns of TiO2-P25 composite films calcinated at 400oC


Dr. Hazem Falah Sakeek                                                13
Without using PEG
10%w PEG




Numerous random macropores are formed through the nanoscale TiO2 particles
  Dr. Hazem Falah Sakeek                                                                  14
Photocatalysis Measurements




  Visual degradation of the MO dye




                                     15
UV-VIS Absorption Spectra of MO




   Absorption spectra of MO dye sol illuminated by UV radiation in
          contact with TiO2-P25 films as a function of time

Dr. Hazem Falah Sakeek                                               16
Photocatalytic activity for TiO2-P25 Film




                A
             Ln     kt
                Ao




Variation of Ln(A/Ao) of MO dye solution in contact with TiO2-P25 composite
      film as a function of illumination period at wavelength of 463nm.

 Dr. Hazem Falah Sakeek                                                       17
Conclusion
    Macroporous TiO2-P25 composite films have been successfully Fabricated
     on glass substrate by spin-coating techniques free of cracks and
     agglomeration.
    The photocatalytic behavior of the films have been investigated.


Future Work
    Optimize the P25 loading and study its effect on the photocatalyst.
    Study the effect of the film structure (porous size) on the photocatalyst.
    Modifying the Film with Noble metals such as Ag, Au, Pt. to extend the
     Photocatalyst in the visible region of the spectrum.




    Dr. Hazem Falah Sakeek                                                        18
Photocatalytic activity of macroporous ti o2 p25 films

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Photocatalytic activity of macroporous ti o2 p25 films

  • 1. ‫المؤتمر الدولي الثاني‬ ‫للعلوم األساسية والتطبيقية‬ The Second International Conference on Basic and Applied Sciences Oct 9 – 11, 2012 Macro-porous TiO2-P25 composite thick film for photocatalytic applications Institute for Materials & Surface Dr. Hazem Falah Sakeek Technology (IMST) Department of Physics Kiel – Germany Al-Azhar University - Gaza Sponsored by DAAD
  • 2. The objectives of this research work are:  (1) to use sol-gel technique to produce a macro-porous TiO2-P25 composite films.  (2) to evaluate the photocatalytic activity of the fabricated TiO2-P25 composite films. Dr. Hazem Falah Sakeek 2
  • 3. Introduction Environmental contamination, which is growing around the world or in our daily life, is a serious social problem not to be neglected. Examples of such contamination can be endlessly listed as follows:  — Water pollution caused by industrial and household wastes  — Respiratory diseases caused by air pollutants such as SOx or NOx  — Room air contamination caused by organic compounds emerging from newly developed building materials Dr. Hazem Falah Sakeek 3
  • 4. Solution for the Environmental contamination  The fact that using energy to eliminate such environmental contamination increases emission of CO2 resulting in more global warming, however, leads us to a dilemma not to use energy to achieve our anti-pollution goal.  We need a new method that can gently harmonize the contaminated environment to restore original conditions by using natural energy.  One solution to that problem is, Photo-catalyst. Dr. Hazem Falah Sakeek 4
  • 5. What is a photo-catalysts?  Catalyst is a substance that makes a chemical reaction more likely to happen by reducing the activation energy needed to start it.  A catalyst speed up a chemical reaction or make it happen at a lower temperature. Once the reaction has finished, the catalyst isn't used up.  Photocatalysis means light is involved in making a catalyst do its job. In other words, light provides the energy that allows the catalyst to work. Dr. Hazem Falah Sakeek 5
  • 6. Dr. Hazem Falah Sakeek 6
  • 7. The function of the photo-catalyst are: Anti- Purifying bacteria water Preventing Deodorizing contamination (Sterilization) Purifying the air (dissolving NOx) Dr. Hazem Falah Sakeek 8
  • 8. Thin-film Photocatalyst In order to use TiO2 as an effective photocatalyst for the above mentioned applications, powder is not an appropriate form, because it may be blown off by wind or washed out by water, and when used to purify water, it has to be separated from the water. Thus, a method to fix the powder is required. Dr. Hazem Falah Sakeek 10
  • 9. Film Preperation Material Used Method  Titanium (IV) Isopropoxide,  Films prepared by spin-coating at 3000rpm for 20s on a glass  Diethanolamine (DEA) as a substrate. And annealed at 400oC stabilizing agent, for 10min.  Nanocrystalline TiO2 Titanium Powder P25, used as filler  Acetyl acetone,  Ethanol,  Polyethylene glycol (PEG 400) used as a surfactant. Dr. Hazem Falah Sakeek 11
  • 10. Characterization  XRD  SEM  Optical Properties Measurements for the films  UV-Visible Absorption of MO for Photocatalyst activity. Dr. Hazem Falah Sakeek 12
  • 11. XRD Spectra for TiO2, P25 Thin films XRD patterns of TiO2-P25 composite films calcinated at 400oC Dr. Hazem Falah Sakeek 13
  • 12. Without using PEG 10%w PEG Numerous random macropores are formed through the nanoscale TiO2 particles Dr. Hazem Falah Sakeek 14
  • 13. Photocatalysis Measurements Visual degradation of the MO dye 15
  • 14. UV-VIS Absorption Spectra of MO Absorption spectra of MO dye sol illuminated by UV radiation in contact with TiO2-P25 films as a function of time Dr. Hazem Falah Sakeek 16
  • 15. Photocatalytic activity for TiO2-P25 Film A Ln  kt Ao Variation of Ln(A/Ao) of MO dye solution in contact with TiO2-P25 composite film as a function of illumination period at wavelength of 463nm. Dr. Hazem Falah Sakeek 17
  • 16. Conclusion  Macroporous TiO2-P25 composite films have been successfully Fabricated on glass substrate by spin-coating techniques free of cracks and agglomeration.  The photocatalytic behavior of the films have been investigated. Future Work  Optimize the P25 loading and study its effect on the photocatalyst.  Study the effect of the film structure (porous size) on the photocatalyst.  Modifying the Film with Noble metals such as Ag, Au, Pt. to extend the Photocatalyst in the visible region of the spectrum. Dr. Hazem Falah Sakeek 18