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pro vyhledávání: '"M Hisham Alnasir"'
Autor:
Farhad Ali, Asadullah Dawood, Akbar Hussain, M Hisham Alnasir, Muhammad Asad Khan, Tehmeena Maryum Butt, Naveed Kausar Janjua, Anum Hamid
Publikováno v:
Discover Sustainability, Vol 5, Iss 1, Pp 1-18 (2024)
Abstract Biomass has become a key contender in the race to find sustainable energy options, as we move toward a more environmentally friendly future. This extensive assessment explores the potential of biomass to transform the global energy landscape
Externí odkaz:
https://doaj.org/article/dfaf4ac530314be395a42916adf1f354
Autor:
Samson Aisida, Timothy C. Chibueze, M. Hisham Alnasir, Oluwole E. Oyewande, A. T. Raji, C.E. Ekuma, Ishaq Ahmad, Ting-kai Zhao, Malik Maaza, Fabian I. Ezema
Publikováno v:
SSRN Electronic Journal.
Akademický článek
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Autor:
Fabian I. Ezema, Ishaq Ahmad, Samson O. Aisida, Malik Maaza, M. Hisham Alnasir, Subelia Botha, Ngozi Madubuonu
Publikováno v:
Applied Nanoscience. 10:305-315
Biogenic synthesis of iron oxide nanorods (FeO-NRs) from FeCl3 capped with Moringa oleifera (MO) has been developed in this work. The facile, cost effective, and eco-friendly FeO-NRs formulated were characterized using various techniques. The change
Publikováno v:
Journal of Magnetism and Magnetic Materials. 449:137-144
We report on magnetic and magnetothermal properties of undoped and doped gadolinium silicide (Gd 5 Si 4 ) nanoparticles with the objective of simultaneously attaining high specific absorption rate ( SAR ) and low Curie temperature ( T C ) suitable fo
Publikováno v:
Applied Physics A. 125
We report the magnetic and magnetothermal properties of functionalized Ni1−xCux nanoparticles prepared by the sol–gel method, with x = 0.20–0.28 and having a size less than 10 nm. Zero-field-cooled thermal demagnetization measurements show that
Autor:
Samson O. Aisida, M. Hisham Alnasir, Subelia Botha, Fabian I. Ezema, A.K.H. Bashir, Remy Bucher, Tingkai Zhao, Malik Maaza, Ishaq Ahmad
Publikováno v:
European Polymer Journal. 132:109739
This work reports the synthesis of PEGxMn0.5Zn0.5Fe2-xO4 NPs via sol–gel protocols using PEG to modify and evaluate their microstructural and magnetic properties for their potential use as thermoablation applications. The properties of the obtained