Microwave-based methods are widely employed to synthesize metal nanoparticles on various substrates. However, the detailed mechanism of formation of such hybrids has not been addressed. In this paper, we describe the thermodynamic and kinetic aspects of reduction of metal salts by ethylene glycol under microwave heating conditions. On the basis of this analysis, we identify the temperatures above which the reduction of the metal salt is thermodynamically favorable and temperatures above which the rates of homogeneous nucleation of the metal and the heterogeneous nucleation of the metal on supports are favored. We delineate different conditions which favor the heterogeneous nucleation of the metal on the supports over homogeneous nucleation ...
The oxygen reduction reaction (ORR), the rate-limiting reaction in proton exchange membrane fuel cel...
An effective synthesis strategy of hybrid metal (PtRu)/metal oxide (SnO2) nanoparticles on graphenen...
Since the late 1980s, the scientific community has been attracted to microwave energy as an alternat...
Microwave-based methods are widely employed to synthesize metal nanoparticles on various substrates....
Microwave-based methods are widely employed to synthesize metal nanoparticles on various substrates....
The development of greener chem. processes is becoming more and more important because this approach...
Heterogeneous transition metal oxide catalysts have advantages over homogeneous catalysts, such as e...
Nanostructured metal catalysts are of great interest because of their marked catalytic performances....
na to and narrow size distributions stabilized by appropriate catalysis, in photodevices, and in enh...
We demonstrate an ultrafast method for the formation of, graphene supported Pt catalysts by the co-r...
We demonstrate an ultrafast method for the formation of graphene supported Pt catalysts by the co-re...
Nanoparticles (NPs) are an exciting new class of materials with unique physical and chemical propert...
This work deals with the development of a green and versatile synthesis of stable mono- and bi-metal...
The synthesis of complex functional inorganic materials, such as oxides, can be successfully perform...
The oxygen reduction reaction (ORR), the rate-limiting reaction in proton exchange membrane fuel cel...
An effective synthesis strategy of hybrid metal (PtRu)/metal oxide (SnO2) nanoparticles on graphenen...
Since the late 1980s, the scientific community has been attracted to microwave energy as an alternat...
Microwave-based methods are widely employed to synthesize metal nanoparticles on various substrates....
Microwave-based methods are widely employed to synthesize metal nanoparticles on various substrates....
The development of greener chem. processes is becoming more and more important because this approach...
Heterogeneous transition metal oxide catalysts have advantages over homogeneous catalysts, such as e...
Nanostructured metal catalysts are of great interest because of their marked catalytic performances....
na to and narrow size distributions stabilized by appropriate catalysis, in photodevices, and in enh...
We demonstrate an ultrafast method for the formation of, graphene supported Pt catalysts by the co-r...
We demonstrate an ultrafast method for the formation of graphene supported Pt catalysts by the co-re...
Nanoparticles (NPs) are an exciting new class of materials with unique physical and chemical propert...
This work deals with the development of a green and versatile synthesis of stable mono- and bi-metal...
The synthesis of complex functional inorganic materials, such as oxides, can be successfully perform...
The oxygen reduction reaction (ORR), the rate-limiting reaction in proton exchange membrane fuel cel...
An effective synthesis strategy of hybrid metal (PtRu)/metal oxide (SnO2) nanoparticles on graphenen...
Since the late 1980s, the scientific community has been attracted to microwave energy as an alternat...