High energy ion irradiation is an important tool for nanoscale modification of materials. In the case of thin targets and 2D materials, which these energetic ions can pierce through, nanoscale modifications such as production of nanopores can open up pathways for new applications. However, materials modifications can be hindered because of subsequent energy release via electron emission. In this work, we follow energy dissipation after the impact of an energetic ion in thin graphite target using Geant4 code. Presented results show that significant amount of energy can be released from the target. Especially for thin targets and highest ion energies, almost 40% of deposited energy has been released. Therefore, retention of deposited energy c...
A large area suspended graphene is irradiated with Vulcan PW laser to produce energetic ions. A sing...
The damage production induced by MeV highly charged ions (HCI) irradiations in graphene supported on...
Graphite is a classical material in neutron radiation environments, being widely used in nuclear rea...
High energy ion irradiation is an important tool for nanoscale modification of materials. In the cas...
Materials experience ion radiation in a variety of contexts including cosmic rays in space and focus...
Many of the proposed future applications of graphene require the controlled introduction of defects ...
International audienceWe show that the work function of exfoliated single layer graphene can be modi...
International audienceWe show that the work function of exfoliated single layer graphene can be modi...
International audienceWe show that the work function of exfoliated single layer graphene can be modi...
International audienceWe show that the work function of exfoliated single layer graphene can be modi...
International audienceWe show that the work function of exfoliated single layer graphene can be modi...
A large area suspended graphene is irradiated with Vulcan PW laser to produce energetic ions. A sing...
The ripple topography of ion-beam–eroded surfaces offers a novel method to determine the shape of co...
Due to its excellent thermo-physical properties and radiation hardness, isotropic graphite is presen...
Due to its excellent thermo-physical properties and radiation hardness, isotropic graphite is presen...
A large area suspended graphene is irradiated with Vulcan PW laser to produce energetic ions. A sing...
The damage production induced by MeV highly charged ions (HCI) irradiations in graphene supported on...
Graphite is a classical material in neutron radiation environments, being widely used in nuclear rea...
High energy ion irradiation is an important tool for nanoscale modification of materials. In the cas...
Materials experience ion radiation in a variety of contexts including cosmic rays in space and focus...
Many of the proposed future applications of graphene require the controlled introduction of defects ...
International audienceWe show that the work function of exfoliated single layer graphene can be modi...
International audienceWe show that the work function of exfoliated single layer graphene can be modi...
International audienceWe show that the work function of exfoliated single layer graphene can be modi...
International audienceWe show that the work function of exfoliated single layer graphene can be modi...
International audienceWe show that the work function of exfoliated single layer graphene can be modi...
A large area suspended graphene is irradiated with Vulcan PW laser to produce energetic ions. A sing...
The ripple topography of ion-beam–eroded surfaces offers a novel method to determine the shape of co...
Due to its excellent thermo-physical properties and radiation hardness, isotropic graphite is presen...
Due to its excellent thermo-physical properties and radiation hardness, isotropic graphite is presen...
A large area suspended graphene is irradiated with Vulcan PW laser to produce energetic ions. A sing...
The damage production induced by MeV highly charged ions (HCI) irradiations in graphene supported on...
Graphite is a classical material in neutron radiation environments, being widely used in nuclear rea...