Faculty Profile
{Biodata Not Available}
Research Profiles
Research Area
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| No. | Journal Publications |
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| 1. |
Efficient photo catalysts based on silver doped ZnO nanorods for the photo degradation of methyl orange.Authors: 32. M. A. Bhatti, A.A. Shah, K.F. Almani, A. Tahira, S.E. Chalangar, A.D. Chandio, and Z.H. Ibupoto,,
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| 2. |
Facile doping of nickel into Co 3 O 4 nanostructures to make them efficient for catalyzing the oxygen evolution reaction.Authors: A.L. Bhatti, U. Aftab, A. Tahira, M.I. Abro, M. H. Aghem, M. A. Bhatti, and Z.H. bupoto,
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| 3. |
Facile synthesis of copper doped ZnO nanorods for the efficient photo degradation of methylene blue and methyl orangeAuthors: A.A. Shah, M.A. Bhatti, A. Tahira, A.D. Chandio, I.A. Channa, A.G. Sahito, E. Chalangar, M. Willander, O. Nur, and Z.H. Ibupoto,
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| 4. |
Chemically Coupled Cobalt Oxide Nanosheets Decorated onto the Surface of Multiwall Carbon Nanotubes for Favorable Oxygen Evolution Reaction.Authors: A.Q. Mugheri, A. Tahira, U. Aftab, A.L. Bhatti, R. Lal, M.A. Bhatti, G.Z. Memon, A.B. Mallah, M.A. Abassi, A. Nafady, and Z.H. Ibupoto,
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| 5. |
Tin as an Effective Doping Agent into ZnO for the Improved Photodegradation of Rhodamine B.Authors: A.A. Shah, M.A. Bhatti, A.D. Chandio, K.F. Almani, M.A. Abbasi, A.L. Bhatti, A.Q. Mugheri, M. Willander, O. Nour, B. Waryani, A. Tahira, and Z.H. Ibupoto,
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| 6. |
Chemically Coupled Multiwall Carbon Nanotubes with Leaf-Like Nanostructures of NiO for Sensitive and Selective Determination of Uric Acid.Authors: R. Lal, M.A. Bhatti, G. Shahzad, A. Tahira, M. Panhwar, B. Lal, A. Nafady, and Z.A. Ibupoto,
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| 7. |
TiO2/ZnO Nanocomposite Material for Efficient Degradation of Methylene Blue.Authors: M.A. Bhatti, A.A. Shah, K.F. Almaani, A. Tahira, A.D. Chandio, M. Willander, O. Nur, O. A.Q. Mugheri, A.L. Bhatti, B. Waryani, and A. Nafady, Z.H. Ibupoto,
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| 8. |
Enzymes and phytochemicals from neem extract robustly tuned the photocatalytic activity of ZnO for the degradation of malachite green (MG) in aqueous mediaAuthors: M.A. Bhatti, A. Tahira, A.D. Chandio, K.F. Almani, A.L. Bhatti, B. Waryani, A.Nafady, and Z.H. Ibupoto,,
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| 9. |
The Crystal Disorder into ZnO with Addition of Bromine and It?s Outperform Role in the Photodegradation of Methylene Blue.Authors: Z.A Ujan, A. Tahira, A.A. Mahesar, A. H. Markhand, A. L. Bhatti, A. Q. Mugheri, M.A. Bhatti, N.M. Shaikh, R.H. Mari, A. Nafady, and Ibupoto, Z.H,
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| 10. |
Low Temperature Aqueous Chemical Growth Method for the Doping of W into ZnO Nanostructures and Their Photocatalytic Role in the Degradration of Methylene Blue.Authors: M.A. Bhatti, K.F. Almaani, A.A. Shah, A. Tahira, A.D. Chandio, A.Q. Mugheri, A. L. Bhatti, B. Waryani, S.S. Medany, A. Nafady, and Z.A. Ibupoto,
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| 11. |
Simultaneous doping of sulfur and chloride ions into ZnO nanorods for improved photocatalytic properties towards degradation of methylene blue.Authors: Z.A. Ujjan, M.A. Bhatti, A.A. Shah, A. Tahira, N.M. Shaikh, S. Kumar, A.Q. Mugheri, S.S. Medany, A. Nafady, F Alnjiman, M.Emo, B. Vigolo, and Z.H. Ibupoto,
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| 12. |
NiCo2O4 nanostructures loaded onto pencil graphite rod: An advanced composite material for oxygen evolution reactionAuthors: Z.H. Ibupoto, A. Tahira, A.A. Shah, U. Aftab, M.Y. Solangi, J.A. Leghari, A.H. Samoon, A.L. Bhatti, M.A. Bhatti, R. Mazzaro, and V. Morandi, M.I. Abro, A Nafady. A.M. Al-Enizi, M.Emo and B. Vigolo.,
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| 13. |
Effective Removal of Methylene Blue by Surface Alteration of TiO2 with Ficus Carica Leaf Extract under Visible LightAuthors: M.A. Bhatti, S.J. Gilani, A.A. Shah, I.A. Channa, K.F. Almani, A.D. Chandio, I.A. Halepoto, A. Tahira, M.N. Bin Jumah, and Z.H. Ibupoto,
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| 14. |
Facile synthesis of a luminescent carbon material from yogurt for the efficient photocatalytic degradation of methylene blue.Authors: M.A. Bhatti, A. Tahira, A.A. Shah, U. Aftab, B. Vigolo, A.R. Khattab, A. Nafady, I.A. Halepoto, M. Tonezzer, and Z.H. Ibupoto, Z.H,
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| 15. |
Psyllium-Husk-Assisted Synthesis of ZnO Microstructures with Improved Photocatalytic Properties for the Degradation of Methylene Blue (MB)Authors: S.N.U.S.Bukhari, A.A. Shah, M.A. Bhatti, A. Tahira, I.A. Channa, A.K. Shah, A.D. Chandio, W.A. Mahdi, S. Alshehri, Z.H. Ibhupoto, and W. Liu.,
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| 16. |
A green approach for the preparation of ZnO@ C nanocomposite using agave americana plant extract with enhanced photodegradation.Authors: M.A. Jakhrani, A. Tahira, M.A. Bhatti, A.A. Shah, N.M. Shaikh, R.H. Mari, B. Vigolo, M. Emo, M.D. Albaqami, A. Nafady, and Z.H. Ibupoto,,
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| 17. |
Mn3O4@ZnO Hybrid Material: An Excellent Photocatalyst for the Degradation of Synthetic Dyes including Methylene Blue, Methyl Orange and Malachite Green. NanomaterialsAuthors: B. Shaikh , M.A. Bhatti , A. A. Shah , A. Tahira , A. K. Shah, A. Usto, U. Aftab, S. I. Bukhari, S. Alshehri, S. N. U. S. Bukhari, M. Tonezzer , B. Vigolo, and Z. H. Ibhupoto,
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| 18. |
Renewable and eco-friendly ZnO immobilized onto dead sea sponge floating materials with dual practical aspects for enhanced photocatalysis and disinfection applications.Authors: M.A. Bhatti, K.F Almani, A.A.Shah, A. Tahira, I.A. Chana, U. Aftab, M.H. Ibupoto, A.N. Mirjat, A. Aboelmaare, A. Nafady, and B. Vigolo,
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| 19. |
ZnO Nanostructures Doped with Various Chloride Ion Concentrations for Efficient Photocatalytic Degradation of Methylene Blue in Alkaline and Acidic Media.Authors: R.A. Alshgari, Z.A. Ujjan, A.A. Shah, M.A. Bhatti, A. Tahira, N.M. Shaikh, S. Kumar, M.H. Ibupoto, A. Elhawary, A. Nafady, A. and B. Vigolo,
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| 20. |
Highly Heterogeneous Morphology of Cobalt Oxide Nanostructures for the Development of Sensitive and Selective Ascorbic Acid Non-Enzymatic SensorAuthors: A.S. Chang, A. Tahira, F. Chang, A.G. Solangi, M.A. Bhatti, B. Vigolo, A. Nafady, and Z.H. Ibupoto,,
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| 21. |
Facile Synthesis and Fabrication of NIPAM-Based Cryogels for Environmental Remediation.Authors: J. Ambreen, A. Haleem, A.A. Shah, F. Mushtaq, M. Siddiq, M.A. Bhatti, S.N.U. Shah Bukhari, A.D. Chandio, W.A. Mahdi and S. Alshehri,,
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| 22. |
High Performance Carbon Material Prepared from Phalsa Using Mild Pyrolytic Process towards Photodegradation of Methylene Blue under the Irradiation of UV LightAuthors: S.I. Al-Saeedi, M.A. Bhatti, A. Tahira, G.M. Al-Senani, N.S. Al-Kadhi, A. Nafady, and Z.H. Ibupoto,
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| 23. |
Effective Removal of Methylene Blue by Mn3O4/NiO Nanocomposite under Visible Light.Authors: K. Majeed, J. Ambreen, S.A. Khan, S. Muhammad, A.A. Shah, M.A. Bhatti, S.S. Batool, M. Farooq, S.N.U. Shah Bukhari, A.D. Chandio, and S.J. Gilani,
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| 24. |
Green Synthesis of NiO Nanoflakes Using Bitter Gourd Peel, and Their Electrochemical Urea Sensing Application.Authors: I. Naz, A. Tahira, A.A. Shah, M.A. Bhatti, I.A. Mahar, M.P. Markhand, G.M. Mastoi, A. Nafady, S.S. Medany, E.A. Dawi, L.M. Saleem, B. Vigolo and Z.H. Ibupoto,,
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| 25. |
Biogenic Preparation of ZnO Nanostructures Using Leafy Spinach Extract for High-Performance Photodegradation of Methylene Blue under the Illumination of Natural Sunlight.Authors: M.A. Jakhrani, M.A. Bhatti, A. Tahira, A.A Shah, E.A. Dawi, B. Vigolo, A. Nafady, L.M. Saleem, A.A.K. Haj Ismail, and Z.H. Ibupoto,
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| 26. |
Oxygenated terminals of milky sap of Calotropis procera transformed 1D ZnO structure to 0D nanoparticles for enhanced photocatalytic degradation of malachite green and methylene blue.Authors: Bhatti, M.A. Tahira, A. Hullio, A.A. Aftab, U. Nafady, A. Vigolo, B. and Ibupoto, Z.H.,
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| 27. |
Highly Active Carbon Material Derived from Carica papaya Fruit Juice: Access to Efficient Photocatalytic Degradation of Methylene Blue in Aqueous Solution under the Illumination of Ultraviolet LightAuthors: Bhatti, M.A., Dawi, E., Tahira, A., Almani, K.F., Medany, S.S., Nafady, A., Solangi, Z.A., Aftab, U. and Ibhupoto, Z.H,
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| 28. |
Chemical Free Laser-Assisted Synthesis and Photocatalytic Applications of Gold?Cobalt NanoparticlesAuthors: Ali, I., Pan, Y., Jamil, Y., Shah, A.A., Bhatti, M.A., Chen, J. and Shen, Z.,,
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| 29. |
Transforming NiCo 2 O 4 nanorods into nanoparticles using citrus lemon juice enhancing electrochemical properties for asymmetric supercapacitor and water oxidationAuthors: Kumar, S., Tahira, A., Bhatti, A.L., Bhatti, M.A., Mari, R.H., Shaikh, N.M., Solangi, M.Y., Nafady, A., Emo, M., Vigolo, B. and Infantes-Molina, A.,,
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| 30. |
Facile synthesis of efficient Co 3 O 4 nanostructures using the milky sap of Calotropis procera for oxygen evolution reactions and supercapacitor applications.Authors: Bhatti, A.L., Tahira, A., Kumar, S., Ujjan, Z.A., Bhatti, M.A., Kumar, S., Aftab, U., Karsy, A., Nafady, A., Infantes-Molina, A. and Ibupoto, Z.H.,,
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| 31. |
Enhanced electro active properties of NiCo2O4 nanostructures using garlic extract for the sensitive and selective enzyme-free detection of ascorbic acid.Authors: Solangi, A.G., Tahira, A., Chang, A.S., Pirzada, T., Solangi, Z.A., Chang, F., Bhatti, M.A., Bhatti, A.L., Kumar, S., Hanan, A. and Dawi, E,
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| 32. |
Efficient photodegradation of malachite green in sunlight using ZnO nanostructures modified with pomegranate peel.Authors: Mastoi, S., Bhatti, M.A., Tahira, A., Jakhrani, M.A., Manan, A., Kumar, S., Shah, A.A., Nafady, A., Liaquat, A., Dawi, E.A. and Ismail, A.A.K.H.,,
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| 33. |
An advanced PdNPs@ MoS 2 nanocomposite for efficient oxygen evolution reaction in alkaline mediaAuthors: Aftab, U., Solangi, M.Y., Tahira, A., Hanan, A., Abro, M.I., Karsy, A., Dawi, E., Bhatti, M.A., Alshammari, R.H., Nafady, A. and Gradone, A.,,
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