In this project, the aim was to carry out the Suzuki reaction using a new and unique catalyst with a base of Fe3O4 magnetic nanoparticles coated using a new ligand. In fact, this magnetic catalyst has an inhomogeneous surface to create a connection between the organic and aqueous phases so that the carbon–carbon coupling reaction is completely performed on its large surface. The structure of this catalyst uses two metals, nickel and cobalt, which are coated on a bed of amino linkers and propel the Suzuki coupling reaction at high speed on the catalyst surface. The products obtained are from ideal and optimal conditions with an efficiency of over 98%. The catalyst has a recovery power of over 96% and has enough power to perform several coupl...
A metallodendron functionalized with dicyclohexyldiphosphino palladium complex was synthesized. The ...
A magnetic nanoparticle (MNP)-supported di(2-pyridyl)methanol palladium dichloride complex was prepa...
WOS: 000414155500013In any catalysis system, regeneration of the used catalyst is of great importanc...
Palladium supported magnetic nanoparticle (Pd@Fe3O4/AMOCAA) was easily prepared in the presence of S...
Novel magnetically recyclable carbon nanocomposites were synthesized to support various nanocatalyst...
In this research, a facile and reproducible approach was implemented for the synthesis of palladium ...
The development of new solid supports for palladium has received a lot of interest lately. These cat...
A novel magnetic nanoparticle-supported oxime palladacycle catalyst was successfully prepared and ch...
The use of magnetic nanoparticles in C–C coupling reactions enables the facile recovery of the catal...
The development of new solid supports for palladium has received a lot of interest lately. These cat...
Abstract: In this work, Pd nanoparticles (Pd-NPs) were decorated on modified magnetic nanoparticles ...
Since metal nanoparticles have a high surface-to-volume ratio and very active surface atoms, they ar...
This research reports a reproducible, reliable, and efficient method for preparing palladium nanopar...
A palladium nanocatalyst Fe3O4@CS-SB-Pd has been synthesized and characterized by FT-IR, XRD, XPS, F...
We here report the preparation of supported palladium nanoparticles (NPs) stabilized by pendant phos...
A metallodendron functionalized with dicyclohexyldiphosphino palladium complex was synthesized. The ...
A magnetic nanoparticle (MNP)-supported di(2-pyridyl)methanol palladium dichloride complex was prepa...
WOS: 000414155500013In any catalysis system, regeneration of the used catalyst is of great importanc...
Palladium supported magnetic nanoparticle (Pd@Fe3O4/AMOCAA) was easily prepared in the presence of S...
Novel magnetically recyclable carbon nanocomposites were synthesized to support various nanocatalyst...
In this research, a facile and reproducible approach was implemented for the synthesis of palladium ...
The development of new solid supports for palladium has received a lot of interest lately. These cat...
A novel magnetic nanoparticle-supported oxime palladacycle catalyst was successfully prepared and ch...
The use of magnetic nanoparticles in C–C coupling reactions enables the facile recovery of the catal...
The development of new solid supports for palladium has received a lot of interest lately. These cat...
Abstract: In this work, Pd nanoparticles (Pd-NPs) were decorated on modified magnetic nanoparticles ...
Since metal nanoparticles have a high surface-to-volume ratio and very active surface atoms, they ar...
This research reports a reproducible, reliable, and efficient method for preparing palladium nanopar...
A palladium nanocatalyst Fe3O4@CS-SB-Pd has been synthesized and characterized by FT-IR, XRD, XPS, F...
We here report the preparation of supported palladium nanoparticles (NPs) stabilized by pendant phos...
A metallodendron functionalized with dicyclohexyldiphosphino palladium complex was synthesized. The ...
A magnetic nanoparticle (MNP)-supported di(2-pyridyl)methanol palladium dichloride complex was prepa...
WOS: 000414155500013In any catalysis system, regeneration of the used catalyst is of great importanc...