Mustapha Soukri
Research Triangle Park
62 Papers
296 Citations
Mustapha Soukri is an academic researcher from Research Triangle Park. The author has contributed to research in topics: Sorbent & Flue gas. The author has an hindex of 17, co-authored 60 publications. Previous affiliations of Mustapha Soukri include RTI International & Sunovion.
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Papers
Boosting the Catalytic Performance of Metal-Organic Frameworks for Steroid Transformations by Confinement within a Mesoporous Scaffold.
Francisco G. Cirujano,Ignacio Luz,Mustapha Soukri,Cédric Van Goethem,Ivo F.J. Vankelecom,Marty Lail,Dirk De Vos +6 more
TL;DR: In this article, the catalytic activity of the dispersed Zr sites present in the confined MOF, and the loading of the mesoporous SiO2, is demonstrated for steroid transformations.
Gas reactions under intrapore condensation regime within tailored metal-organic framework catalysts.
Iker Agirrezabal-Telleria,Ignacio Luz,Manuel A. Ortuño,Mikel Oregui-Bengoechea,Inaki Gandarias,Núria López,Marty Lail,Mustapha Soukri +7 more
TL;DR: The search for robust heterogeneous catalysts for the production of linear α-olefins is still a challenge as they do not show well-defined sites and lack the high selectivity reported for homogeneous counterparts.
Radical addition approach to asymmetric amine synthesis: design, implementation, and comparison of chiral N-acylhydrazones.
TL;DR: The first radical additions to chiral N-acylhydrazones as an approach to asymmetric amine synthesis are disclosed and benzyl and diphenylmethyl were more effective stereocontrol elements than those with the aromatic ring directly attached to the oxazolidinone.
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Electrochemical carbon dioxide reduction to isopropanol using novel carbonized copper metal organic framework derived electrodes
Aravind V. Rayer,Elliot Reid,Atish Kataria,Ignacio Luz,Samuel J. Thompson,Marty Lail,James Zhou,Mustapha Soukri +7 more
TL;DR: In this paper, two commercial copper-decorated metal organic frameworks (MOFs), HKUST-1 and PCN-62, pyrolyzed at variable temperatures, 400−800 °C, were coated on both metallic nickel and copper supports as inks.
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