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Items where Author is "Alqasem, B."

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Number of items: 8.

Article

Wahaab, F.A. and Yahya, W. and Adebayo, L.L. and Kazeem, I. and Abdulraheem, A. and Alqasem, B. and Yusuf, J.Y. and Adekoya, A.A. and Mui Nyuk, C. (2021) Graphene@Ni0.5Co0.5Fe2O4 hybrid framework with enhanced interfacial polarization for electromagnetic wave absorption. Journal of Alloys and Compounds, 854 .

Wahaab, F.A. and Adebayo, L.L. and Adekoya, A.A. and Hakeem, I.G. and Alqasem, B. and Obalalu, A.M. (2020) Physiochemical properties and electromagnetic wave absorption performance of Ni0.5Cu0.5Fe2O4 nanoparticles at X-band frequency. Journal of Alloys and Compounds, 836 .

Yahya, N. and Rehman, Z.U. and Shafie, A. and Alqasem, B. and Soleimani, H. and Irfan, M. and Qureshi, S. (2018) MWCNT for ambient urea synthesis. Physica B: Condensed Matter, 545 . pp. 358-369.

Yahya, N. and Rehman, Z.U. and Shafie, A. and Alqasem, B. and Soleimani, H. and Irfan, M. and Qureshi, S. (2018) MWCNT for ambient urea synthesis. Physica B: Condensed Matter, 545 . pp. 358-369.

Qureshi, S. and Yahya, N. and Kait, C.F. and Alqasem, B. and ur Rehman, Z. and Irfan, M. (2017) Enhanced catalytic activity of α-Fe2O3 with the adsorption of gases for ammonia synthesis. Materials Science Forum, 880 . pp. 15-18.

Yahya, N. and Qureshi, S. and Rehman, Z.U. and Alqasem, B. and Fai Kait, C. (2017) Green urea synthesis catalyzed by hematite nanowires in magnetic field. Journal of Magnetism and Magnetic Materials, 428 . pp. 469-480.

Yahya, N. and Alqasem, B. and Irfan, M. and Qureshi, S. and Rehman, Z.U. and Shafie, A. and Soleimani, H. (2017) The effect of saturation magnetization of nanocatalyst and oscillating magnetic field for green urea synthesis. Physica B: Condensed Matter, 507 . p. 1.

Alqasem, B. and Yahya, N. and Qureshi, S. and Irfan, M. and Ur Rehman, Z. and Soleimani, H. (2017) The enhancement of the magnetic properties of α-Fe2O3 nanocatalyst using an external magnetic field for the production of green ammonia. Materials Science and Engineering B: Solid-State Materials for Advanced Technology, 217 . pp. 49-62.

This list was generated on Mon Jan 24 10:48:13 2022 MYT.