Dr. Robabeh Bashiri

Research Scientist
Universiti Teknologi Petronas, Malaysia


Highest Degree
Ph.D. in Chemistry from Universiti Teknologi PETRONAS, Malaysia

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Area of Interest:

Chemistry
Photoelectrochemical Cell
Organometallic Chemistry
Inorganic Chemistry
Nano Materials

Selected Publications

  1. Bashiri, R., N.M. Mohamed, C.F. Kait, S. Sufian and M. Khatani, 2017. Enhancing Photoelectrochemical hydrogen production over Cu and Ni doped titania thin film: Effect of calcination duration. J. Environ. Chem. Eng., 5: 3207-3214.
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  2. Bashiri, R., N.M. Mohamed, C.F. Kait, S. Sufian and M. Khatani, 2017. Enhanced hydrogen production over incorporated Cu and Ni into titania photocatalyst in glycerol-based photoelectrochemical cell: Effect of total metal loading and calcination temperature. Int. J. Hydrogen Energy, 42: 9553-9566.
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  3. Bashiri, R., N.M. Mohamed, C.F. Kait, S. Sufian, S. Kakooei, M. Khatani and Z. Gholami, 2016. Optimization hydrogen production over visible light-driven titania-supported bimetallic photocatalyst from water photosplitting in tandem photoelectrochemical cell. Renew. Energy, 99: 960-970.
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  4. Bashiri, R., N.M. Mohamed, C.F. Kait, S. Sufian, M. Khatani and H. Hanaei, 2016. Effect of preparation parameters on optical properties of Cu and Ni doped TiO2 photocatalyst. Proc. Eng., 148: 151-157.
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  5. Mohamed, N.M., R. Bashiri, F.K. Chong, S. Sufian and S. Kakooei, 2015. Photoelectrochemical behavior of bimetallic Cu-Ni and monometallic Cu, Ni doped TiO2 for hydrogen production. Int. J. Hydrogen Energy, 40: 14031-14038.
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  6. Bashiri, R., N.M. Mohamed, C.F. Kait and S. Sufian, 2015. Influence of hydrolysis rate on properties of nanosized TiO2 synthesized via sol-gel hydrothermal. Adv. Mater. Res., 1109: 286-290.
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  7. Bashiri, R., N.M. Mohamed, C.F. Kait and S. Sufian, 2015. Hydrogen production from water photosplitting using Cu/TiO2 nanoparticles: Effect of hydrolysis rate and reaction medium. Int. J. Hydrogen Energy, 40: 6021-6037.
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  8. Bashiri, R., N.M. Mohamed, C.F. Kait and S. Sufian, 2015. Effect of heat treatment on the physical properties of bimetallic doped catalyst, Cu-Ni/TiO2. AIP Conf. Proc., Vol. 1669. 10.1063/1.4919193.
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  9. Bashiri, R., N.M. Mohamed, C.F. Kait and S. Sufian, 2014. Application of experimental statistical method in optimizing preparation variables for Cu-Ni/TiO2 photocatalyst. Applied Mech. Mater., 625: 856-859.
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  10. Bashiri, R., M.M. Norani, C.F. Kait and S. Sufian, 2014. Study on synthesis and characterization of Cu-Ni doped TiO2 by sol-gel hydrothermal. Adv. Mater. Res., 925: 248-252.
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  11. Bashiri, R., K. Akhbari and A. Morsali, 2009. Nanopowders of 3D AgI coordination polymer: A new precursor for preparation of silver nanoparticles. Inorg. Chim. Acta, 362: 1035-1041.
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  12. Bashiri, R., K. Akhbari, A. Morsali and M. Zeller, 2008. A three-dimensional AgI coordination polymer constructed via η2 Ag-C bonds: Thermal, fluorescence, structural and solution studies. J. Organometallic Chem., 693: 1903-1911.
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