Sputtering yields, enhanced by more than an order of magnitude, have been observed for 80 keV Xe ion irradiation of monocrystalline Au nanorods. Yields are in the range 100–1900 atoms/ion compared with values for a flat surface of ≈50. This enhancement results in part from the proximity of collision cascades and ensuing thermal spikes to the nanorod surfaces. Molecular dynamic modeling reveals that the range of incident angles occurring for irradiation of nanorods and the larger number of atoms in “explosively ejected” atomic clusters make a significant contribution to the enhanced yield
Irradiation of spherical gold (Au) nanoparticles confined within a silica matrix with swift heavy io...
Ion beam processing of surfaces is well known to lead to sputtering, which conventionally is associa...
Ion irradiation of nanoparticles leads to enhanced sputter yields if the nanoparticle size is of the...
Sputtering yields, enhanced by more than an order of magnitude, have been observed for 80 keV Xe ion...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Sputtering yields, enhanced by more than an order of magnitude, have been observed for 80 keV Xe ion...
Sputtering yields, enhanced by more than an order of magnitude, have been observed for 80 keV Xe ion...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Nanostructures may be exposed to irradiation during their manufacture, their engineering and whilst ...
Ion beam processing of surfaces is well known to lead to sputtering, which conventionally is associa...
We have used in situ transmission electron microscopy to study the sputtering of gold by inert-gas i...
Irradiation of spherical gold (Au) nanoparticles confined within a silica matrix with swift heavy io...
Ion beam processing of surfaces is well known to lead to sputtering, which conventionally is associa...
Ion irradiation of nanoparticles leads to enhanced sputter yields if the nanoparticle size is of the...
Sputtering yields, enhanced by more than an order of magnitude, have been observed for 80 keV Xe ion...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Sputtering yields, enhanced by more than an order of magnitude, have been observed for 80 keV Xe ion...
Sputtering yields, enhanced by more than an order of magnitude, have been observed for 80 keV Xe ion...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Using experiments and computer simulations, we find that 80 keV Xe ion irradiation of Au nanorods ca...
Nanostructures may be exposed to irradiation during their manufacture, their engineering and whilst ...
Ion beam processing of surfaces is well known to lead to sputtering, which conventionally is associa...
We have used in situ transmission electron microscopy to study the sputtering of gold by inert-gas i...
Irradiation of spherical gold (Au) nanoparticles confined within a silica matrix with swift heavy io...
Ion beam processing of surfaces is well known to lead to sputtering, which conventionally is associa...
Ion irradiation of nanoparticles leads to enhanced sputter yields if the nanoparticle size is of the...