International audienceHerein we report a one pot organometallic strategy to access alumina-embedded Pd nanoparticles. Unexpectedly, the decomposition of the organometallic complex tris(dibenzylideneacetone)dipalladium(0), Pd2(dba)3, by dihydrogen in the presence of aluminum isopropoxide, Al(iPrO)3, and without extra stabilizers, was found to be an efficient method to generate a Pd colloidal solution. Careful characterization studies revealed that the so-obtained Pd nanoparticles were stabilized by an aluminum isopropoxide tetramer and 1,5-diphenyl-pentan-3-one, which was produced after reduction of the dba ligand from the organometallic precursor. Moreover, calcination of the obtained nanomaterial in air at 773 K for 2 h resulted in a nanoc...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
One of the key factors for producing highly dispersed controlled nanoparticles is the method used fo...
International audienceIn the field of catalysis by metals, a new insight for the nanodesign of suppo...
International audienceHerein we report a one pot organometallic strategy to access alumina-embedded ...
Benzyl alcohol is a versatile reaction medium for the synthesis of different types of nanoparticles....
The rational design of catalysts is of great industrial significance, yet there is a fundamental lac...
The rational design of catalyst materials is of great industrial significance, yet there is a fundam...
The development of new methods to prepare Pd-containing nanomaterials for catalysis are reported. Mo...
A bifunctional catalyst, Pd nanoparticles (NPs) encapsulated in MIL-101, has been synthesized by cap...
Au@Pd nanoparticles (NPs) of size range 4.5-13 nm ( approximate to 7.2 nm) were generated inside the...
International audienceOne of the key factors for producing highly dispersed controlled nanoparticles...
Robust Pd nanoparticles were novel and successfully synthesized on the γ-Al2O3 support by a simple a...
A new aluminum hydroxide-supported palladium catalyst (1) made by a one-pot synthesis through nanopa...
We present the successful synthesis and stabilization of 3.5 nm Pd nanoparticles (standard deviation...
Colloids of palladium nanoparticles have been prepared by the solvated metal atom dispersion (SMAD) ...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
One of the key factors for producing highly dispersed controlled nanoparticles is the method used fo...
International audienceIn the field of catalysis by metals, a new insight for the nanodesign of suppo...
International audienceHerein we report a one pot organometallic strategy to access alumina-embedded ...
Benzyl alcohol is a versatile reaction medium for the synthesis of different types of nanoparticles....
The rational design of catalysts is of great industrial significance, yet there is a fundamental lac...
The rational design of catalyst materials is of great industrial significance, yet there is a fundam...
The development of new methods to prepare Pd-containing nanomaterials for catalysis are reported. Mo...
A bifunctional catalyst, Pd nanoparticles (NPs) encapsulated in MIL-101, has been synthesized by cap...
Au@Pd nanoparticles (NPs) of size range 4.5-13 nm ( approximate to 7.2 nm) were generated inside the...
International audienceOne of the key factors for producing highly dispersed controlled nanoparticles...
Robust Pd nanoparticles were novel and successfully synthesized on the γ-Al2O3 support by a simple a...
A new aluminum hydroxide-supported palladium catalyst (1) made by a one-pot synthesis through nanopa...
We present the successful synthesis and stabilization of 3.5 nm Pd nanoparticles (standard deviation...
Colloids of palladium nanoparticles have been prepared by the solvated metal atom dispersion (SMAD) ...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
One of the key factors for producing highly dispersed controlled nanoparticles is the method used fo...
International audienceIn the field of catalysis by metals, a new insight for the nanodesign of suppo...