We report a facile approach used for the simultaneous reduction and synthesis of a well dispersed magnetically separable palladium nanoparticle supported on magnetite (Pd/Fe3O4 nanoparticles) via continuous flow synthesis under microwave irradiation conditions, using a Wave Craft\u27s microwave flow reactor commercially known as Arrhenius One, which can act as a unique process for the synthesis of highly active catalysts for carbon monoxide (CO) oxidation catalysis. The prepared catalysts are magnetic, which is an advantage in the separation process of the catalyst from the reaction medium. The separation process is achieved by applying a strong external magnetic field which makes the separation process easy, reliable, and environmentally f...
Microwave (MW)-assisted hydrothermal synthesis of metal catalysts represents an innovative sustainab...
This research reports a reproducible, reliable, and efficient method for preparing palladium nanopar...
In current study Fe3O4 nanoparticles were used as a catalyst in the synthesis of propargylamines via...
We report a facile approach used for the simultaneous reduction and synthesis of a well dispersed ma...
Microwave assisted synthesis technique was used to prepare palladium supported on iron oxide nanopar...
Microwave assisted synthesis technique was used to prepare palladium supported on iron oxide nanopar...
In this paper, we report a simple, versatile, and rapid method for the synthesis of Pd nanoparticle ...
In this research, a facile and reproducible approach was implemented for the synthesis of palladium ...
Herein, versatile, and reproducible method to prepare Pd/Fe3O4 via hydrothermal synthesis. The vital...
Abstract: In this research, we report a scientific investigation of an efficient method used for the...
There are several crucial issues that need to be addressed in the field of applied catalysis. These ...
The use of magnetic nanoparticles in C–C coupling reactions enables the facile recovery of the catal...
There are several crucial issues that need to be addressed in the field of applied catalysis. These ...
Magnetic iron oxide nanoparticles, in particular magnetite (Fe3O4) and maghemite (γ-Fe2O3), with a f...
Preparation of synthetic magnetite (Fe3O4) is particularly by precipitation methods due to the neces...
Microwave (MW)-assisted hydrothermal synthesis of metal catalysts represents an innovative sustainab...
This research reports a reproducible, reliable, and efficient method for preparing palladium nanopar...
In current study Fe3O4 nanoparticles were used as a catalyst in the synthesis of propargylamines via...
We report a facile approach used for the simultaneous reduction and synthesis of a well dispersed ma...
Microwave assisted synthesis technique was used to prepare palladium supported on iron oxide nanopar...
Microwave assisted synthesis technique was used to prepare palladium supported on iron oxide nanopar...
In this paper, we report a simple, versatile, and rapid method for the synthesis of Pd nanoparticle ...
In this research, a facile and reproducible approach was implemented for the synthesis of palladium ...
Herein, versatile, and reproducible method to prepare Pd/Fe3O4 via hydrothermal synthesis. The vital...
Abstract: In this research, we report a scientific investigation of an efficient method used for the...
There are several crucial issues that need to be addressed in the field of applied catalysis. These ...
The use of magnetic nanoparticles in C–C coupling reactions enables the facile recovery of the catal...
There are several crucial issues that need to be addressed in the field of applied catalysis. These ...
Magnetic iron oxide nanoparticles, in particular magnetite (Fe3O4) and maghemite (γ-Fe2O3), with a f...
Preparation of synthetic magnetite (Fe3O4) is particularly by precipitation methods due to the neces...
Microwave (MW)-assisted hydrothermal synthesis of metal catalysts represents an innovative sustainab...
This research reports a reproducible, reliable, and efficient method for preparing palladium nanopar...
In current study Fe3O4 nanoparticles were used as a catalyst in the synthesis of propargylamines via...