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Dr. Abdullahi Shittu

Physics
Gombe State University

Interests

Radiation effects, Radiation dosimetry, Nanomaterials fabrications, Nanocomposite materials, Luminescent materials, Health Physics, and carbon nanostructures

Projects

1. Nanocomposites for radiation dosimetry and other applications. 2. Carbon-based nanomaterials for various applications.

Publications

i. Mohiuddin, S. M. U. G., Saeed A., Alshahrie A., Memic, A., Aljoud F., Abdullahi, S., Organji, H. M., and Salah, N. (2022) “Carbon nanoparticles extracted from date palm fronds for fluorescence bioimaging: In vitro study” Journal of Functional Biomaterials. 13(4) 218. https://doi.org/10.3390/jfb13040218 [Web of Science Ranking: Q2] ii. Alsulami, I. K., Saeed, A., Abdullahi, S., Alshahrie, A., and Salah, N. (2022) “Nanodiamonds as a knife for cutting graphene multilayers into ultrafine pieces under microwave irradiation” FlatChem. 36 100432. https://doi.org/10.1016/j.flatc.2022.100432 [Web of Science Ranking: Q2] iii. Alsulami, I. K., Saeed, A., Abdullahi, S., Hammad, A. H., Alshahrie, A., and Salah, N. (2022) “Microwave irradiation for the production of graphene-nanodiamond composite carbon spheres” Diamond and Related Materials. 130 109411. https://doi.org/10.1016/j.diamond.2022.109411 [Web of Science Ranking: Q2] iv. Mohiuddin, S. M. U. G., Aydarous, A., Alshahrie A., Saeed, A., Memic, A., Abdullahi, S., and Salah, N. (2022) “Structural, morphological, and optical properties of carbon nanoparticles unsheathed from date palm fronds” RSC Advances. 12(42) 27411 – 27420. https://doi.org/10.1039/D2RA04189H [Web of Science Ranking: Q2] v. Aydarous, A., Zeghib S. Abdullahi S., and Al-Subaie H. (2022) “Radiological hazard assessment and sensitivity analysis for soil samples in Taghdoua area of Ranyah, Saudi Arabia” Journal of Radiation Research and Applied Sciences. 15(2) 119 - 128. https://doi.org/10.1016/j.jrras.2022.05.006 [Web of Science Ranking: Q3] vi. Abdullahi, S., Aydarous A. Saeed A., and Salah N. (2022) “Fabrication of size-controlled Alq3 nanoparticles within PMMA matrix in the form of nanocomposite sheet for potential use as UV dosimeter” Optical Materials. 128 112402. https://doi.org/10.1016/j.optmat.2022.112402 [Web of Science Ranking: Q2] vii. Saeed, A., Razvi, M. A., Madkhli, A. Y., Abdullahi, S., Aljoud, F., Zughaibi, T. A., Aboushoushah, S. F., Alshahrie, A., Memic, A., Al-Hazmi, F. E. and Salah, N. (2022) “Investigation of the tris(8-hydroxyquinoline) aluminum as a promising fluorescent optical material for in vitro bioimaging” Optical Materials. 127 112260. https://doi.org/10.1016/j.optmat.2022.112260 [Web of Science Ranking: Q2] viii. Abdullahi, S., Aydarous A. and Salah N. (2022) “Fabrication of Alq3/PMMA nanocomposite sheet and its potential applications as radiation dosimeter” Journal of Luminescence. 242 118588. https://doi.org/10.1016/j.jlumin.2021.118588 [Web of Science Ranking: Q1] ix. Abdullahi, S., Aydarous A. and Salah N. (2021) “Effects of X-ray irradiation on the structural and optical properties of microcrystalline Alq3 powder and its potential dosimetry application” Radiation Physics and Chemistry. 188 109656. https://doi.org/10.1016/j.radphyschem.2021.109656 [Web of Science Ranking: Q1] x. Abdullahi, S., Ismail A. F. and Yasir M. S. (2020) “Radioactive investigation of Malaysia’s building materials containing NORM and potential radiological risks analysis using RESRAD-BUILD computer code” International Journal of Environmental Analytical Chemistry. https://doi.org/10.1080/03067319.2020.1746778 [Web of Science Ranking: Q3] xi. Abdullahi, S., Ismail A. F. and Yasir M. S. (2020) “Radiological hazard analysis of Malaysia’s ceramic materials using generic and RESRAD BUILD computer code approach” Journal of Radioanalytical and Nuclear Chemistry. 324(1) 301-315. https://doi.org/10.1007/s10967-020-07070-3 [Web of Science Ranking: Q2] xii. Abdullahi, S., Ismail A. F. and Samat S. (2019) “Assessment of Naturally Occurring Radionuclides in Malaysia’s Building Materials” 186(4) 520-523 Radiation Protection Dosimetry. https://doi.org/10.1093/rpd/ncz125 [Web of Science Ranking: Q4] xiii. Abdullahi, S., Ismail A. F. and Samat S. (2019) “Radiological Characterization of Building Materials used in Malaysia and Assessment of External and Internal Doses” Nuclear Science and Techniques 30:46. https://doi.org/10.1007/s41365-019-0569-3 [Web of Science Ranking: Q2] xiv. Abdullahi, S., Ismail A. F., Syawani M. F., Samat S. (2019) “Assessment of the Long-Term Possible Radiological Risk from the used of Ceramic Tiles in Malaysia” Nuclear Science and Techniques. 30:19. https://doi.org/10.1007/s41365-019-0558-6 [Web of Science Ranking: Q2] xv. Abdullahi, S., Ismail A. F. and Samat S. (2019) “Determination of Indoor Doses and Excess Lifetime Cancer Risks caused by Building Materials Containing Natural Radionuclides in Malaysia” Nuclear Engineering and Technology. 51(1), 325-336. https://doi.org/10.1016/j.net.2018.09.017 [Web of Science Ranking: Q1] xvi. Ismail A. F., Abdullahi, S., Samat S. B. and Yasir M. S. (2018). “Radiological Dose Assessment of Natural Radioactivity in Malaysia’s Tiles using Resrad-Build Computer Code” Sains Malaysiana 45(5), 1017-1023. http://dx.doi.org/10.17576/jsm-2018-4705-18 [Web of Science Ranking: Q4] xvii. Hankouraou S. and Abdullahi, S. (2016). “Radiation Hazard Indices due to Intake of Radionuclides in Drinking Water in Gombe, Nigeria” IOSR Journal of Applied Physics (IOSR-JAP). 8(4), 67-73. [non-indexed] xviii. Chifu N. E., Abdullahi, S. and Daniel K. A. (2016). “Determination of Radioactivity Concentration and Estimation of Annual Effective Dose for All Age Categories of Drinking Water Collected from Dutse Town, Nigeria” IOSR Journal of Applied Physics (IOSR-JAP). 8(3), 13-22. [non-indexed] xix. Abdullahi, S., Hankouraou S. and Ziyadat H. (2016). “Determination of Radioactivity Concentration and Annual Committed Effective Dose in Drinking Water Collected from Local Borehole in Gombe, Nigeria" Scholars Journal of Mathematics, Physics and Statistics, 3(2), 56-65. [non-indexed] xx. Hankouraou S. and Abdullahi, S. (2016). “Determination of Radiation Background in the Vicinity of Groundnuts Milling Machines in Gombe Metropolis of Gombe State of Nigeria”. Journal of the Nigerian Association of Mathematical Physics 34, 399-404. [non-indexed] xxi. Abdullahi, S., Chifu, N. E., Abdussalam, S. B., & Hafeez, H. Y. (2016). Evaluation of Radioactivity Concentration in Drinking Water Collected from Local Wells and Boreholes of DutseTown, Northwest, Nigeria. International Journal of Environmental Monitoring and Analysis, 4 (1), 6-11. doi: 10.11648/j.ijema.20160401.12. [non-indexed] xxii. Abdullahi, S., Chifu, N. E., Suleiman, A. B., & Hafeez, H. Y. (2016). “Assessment of Heavy Metals and Radioactivity Concentration in Drinking Water Collected from Local Wells and Boreholes of Dutse Town, Northwest, Nigeria”. Journal of Environment Pollution and Human Health, 4(1), 1-8. doi:10.12691/jephh-4-1-1 [non-indexed] xxiii. Abdullahi, S., Chifu, N. E., Suleiman, A. B., & Hafeez, H. Y. (2016). Evaluation of Heavy Metal Concentration in Drinking Water Collected from Local Wells and Boreholes of Dutse Town, Northwest, Nigeria. Advances in Physics Theories and Applications, 51, 1-20. [non-indexed] xxiv. Abdullahi, S., Madugu, M. L., & Lawan, S. T. (2013). Measurement of Gross Alpha and Beta Radioactivity in selected Local Water Boreholes in Northern Nigeria, Gombe State. Nigerian Association of Mathematical Physics, 25(2), 243-248. [non-indexed]
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Member since December 12, 2022
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Address: Department of Physics, Gombe State University 760214 Gombe
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