Using a newly developed gold Embedded Atom Model potential we conducted molecular dynamics simulations of inert gas aggregation type nanoparticle growth to investigate morphology transformations during the growth process. Our simulations reveal a size anand temperature dependent mechanism whereby nanoparticles of Marks decahedron (m-Dh) morphology are transformed to icosahedron (Ih) nanoparticles via a solid-state process. The findings provide a theoretical explanation for recent experimental population statistics of gold nanoparticles produced by inert gas aggregation methods and may assist in developing methods for producing highly uniform nanoparticle morphologies
Gold (Au) nanoparticles and nanoclusters have been popular over the last 30 years due to their intri...
The growth pathways from tetrahedral to multiply twinned gold nanoparticles in the gas phase are stu...
The nucleation and growth of silver nanoparticles are modeled and simulated based on first-principle...
Using a newly developed gold Embedded Atom Model potential we conducted molecular dynamics simulatio...
The authors use a newly fitted gold embedded atom method potential to simulate the initial nucleatio...
Gold nanoparticles offer a range of highly desirable properties that are intrinsically linked to the...
Gold nanoparticles offer a range of highly desirable properties that are intrinsically linked to the...
The atomic configuration of nanoparticles is key to their properties, in a way that resembles the st...
International audienceDespite the long-lasting interest in the synthesis control of nanoparticles (N...
International audienceDespite the long-lasting interest in the synthesis control of nanoparticles (N...
International audienceDespite the long-lasting interest in the synthesis control of nanoparticles (N...
International audienceDespite the long-lasting interest in the synthesis control of nanoparticles (N...
We have simulated the vacuum deposition and subsequent growth of gold nanoparticles on various subst...
We calculate and compare the relative free energies of ideal/pristine gold nanoparticles for morphol...
We study the assembling of small gold clusters subject to collisions and close contact coalescence b...
Gold (Au) nanoparticles and nanoclusters have been popular over the last 30 years due to their intri...
The growth pathways from tetrahedral to multiply twinned gold nanoparticles in the gas phase are stu...
The nucleation and growth of silver nanoparticles are modeled and simulated based on first-principle...
Using a newly developed gold Embedded Atom Model potential we conducted molecular dynamics simulatio...
The authors use a newly fitted gold embedded atom method potential to simulate the initial nucleatio...
Gold nanoparticles offer a range of highly desirable properties that are intrinsically linked to the...
Gold nanoparticles offer a range of highly desirable properties that are intrinsically linked to the...
The atomic configuration of nanoparticles is key to their properties, in a way that resembles the st...
International audienceDespite the long-lasting interest in the synthesis control of nanoparticles (N...
International audienceDespite the long-lasting interest in the synthesis control of nanoparticles (N...
International audienceDespite the long-lasting interest in the synthesis control of nanoparticles (N...
International audienceDespite the long-lasting interest in the synthesis control of nanoparticles (N...
We have simulated the vacuum deposition and subsequent growth of gold nanoparticles on various subst...
We calculate and compare the relative free energies of ideal/pristine gold nanoparticles for morphol...
We study the assembling of small gold clusters subject to collisions and close contact coalescence b...
Gold (Au) nanoparticles and nanoclusters have been popular over the last 30 years due to their intri...
The growth pathways from tetrahedral to multiply twinned gold nanoparticles in the gas phase are stu...
The nucleation and growth of silver nanoparticles are modeled and simulated based on first-principle...