Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to analyze the structural evolution of fishbone-type carbon nanofiber-supported Pt nanoparticles, with particle size ranging from 5.6 to 30.7 Å. Simulated results indicate that upon adsorption the distribution of first-shell Pt–Pt coordination number and radial distribution function change significantly in Pt nanoparticles up to 2 nm in size and that the restructuring degree of the Pt nanoparticles decreases with particle size, which is attributed both to the reduced binding energy per Pt atom bonded to support and to the increased cohesive energy of the Pt nanoparticles. In the Pt<sub>10</sub> particle, the majority of the Pt atoms are detached f...
The thermal characteristics of bimetallic Pt-Pd nanoparticles, both free and graphite-supported, wer...
The surface structures of cubo-octahedral Pt-Mo nanoparticles have been investigated using the Mont...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modif...
Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to an...
Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to an...
Gaining an insight into the interface structure resulting from the interaction between metal nanopar...
State-of-the-art catalysts are often created via deposition of monolayers, sub-monolayers or nanopar...
We investigated changes in the Pt–Pt bond distance, particle size, crystallinity, and coordination o...
The structural and electronic properties of the interface are critical for the morphology of support...
Interactions of nanoparticles (NPs) with their environment may have a pronounced effect on their str...
In this article, we present a density functional theory (DFT) study of nanoparticles (NPs) using a m...
International audiencePlatinum nanoparticle catalysts are used in a myriad of gas-phase, liquid-phas...
Platinum nanoparticle catalysts are used in a myriad of gas-phase, liquid-phase, and electrochemical...
Molecular simulation is used to model the structural change of carbon nanoparticles in terms of tota...
The surface structures of cubo-octahedral Pt-Mo nanoparticles have been investigated using the Monte...
The thermal characteristics of bimetallic Pt-Pd nanoparticles, both free and graphite-supported, wer...
The surface structures of cubo-octahedral Pt-Mo nanoparticles have been investigated using the Mont...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modif...
Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to an...
Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to an...
Gaining an insight into the interface structure resulting from the interaction between metal nanopar...
State-of-the-art catalysts are often created via deposition of monolayers, sub-monolayers or nanopar...
We investigated changes in the Pt–Pt bond distance, particle size, crystallinity, and coordination o...
The structural and electronic properties of the interface are critical for the morphology of support...
Interactions of nanoparticles (NPs) with their environment may have a pronounced effect on their str...
In this article, we present a density functional theory (DFT) study of nanoparticles (NPs) using a m...
International audiencePlatinum nanoparticle catalysts are used in a myriad of gas-phase, liquid-phas...
Platinum nanoparticle catalysts are used in a myriad of gas-phase, liquid-phase, and electrochemical...
Molecular simulation is used to model the structural change of carbon nanoparticles in terms of tota...
The surface structures of cubo-octahedral Pt-Mo nanoparticles have been investigated using the Monte...
The thermal characteristics of bimetallic Pt-Pd nanoparticles, both free and graphite-supported, wer...
The surface structures of cubo-octahedral Pt-Mo nanoparticles have been investigated using the Mont...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modif...