Ternary M_(n+1)AX_n phases with layered hexagonal structures, as candidate materials used for next-generation nuclear reactors, have shown great potential in tolerating radiation damage due to their unique combination of ceramic and metallic properties. However, M_(n+1)AX_n materials behave differently in amorphization when exposed to energetic neutron and ion irradiations in experiment. We first analyze the irradiation tolerances of different M_(n+1)AX_n (MAX) phases in terms of electronic structure, including the density of states (DOS) and charge density map. Then a new method based on the Bader analysis with the first-principle calculation is used to estimate the stabilities of MAX phases under irradiation. Our calculations show that th...
Both experimental approach and atomistic simulations are performed in order to investigate the influ...
Titanium aluminide (TiAl) alloys were initially developed for moderate temperature (600–850 °C) appl...
One of the essential tasks of modern materials science is the studying of the interaction of various...
Ternary M(n + 1)AX(n) phases with layered hexagonal structures, as candidate materials used for next...
Ternary M_(n+1)AX_n phases with layered hexagonal structures, as candidate materials used for next-g...
Nanolaminated Mn+1AXn phases as candidate materials for next generation nuclear reactor applications...
During investigations of novel material types with uses in future nuclear technologies (ITER/DEMO an...
The family of layered carbides and nitrides known as MAX phase ceramics combine many attractive prop...
Phase transitions induced in hcp M(n+1)AX(n) phases (Ti2AlN, Ti2AlC, and Ti4AlN3) by 1 MeV Au+ ion i...
Materials within nuclear reactors experience some of the harshest environments currently known to ma...
Recent developments in the synthesis of MAX phases have successfully introduced phases incorporating...
For the structure materials applied in the innovative nuclear energy system, the strongly environmen...
Synthesis, characterisation and density functional theory calculations have been combined to examine...
The structural transitions of Ti3AlC2 induced by ion irradiation were investigated over a wide fluen...
The energy dissipation pathways of electronic and nuclear energy loss (Se and Sn, respectively) duri...
Both experimental approach and atomistic simulations are performed in order to investigate the influ...
Titanium aluminide (TiAl) alloys were initially developed for moderate temperature (600–850 °C) appl...
One of the essential tasks of modern materials science is the studying of the interaction of various...
Ternary M(n + 1)AX(n) phases with layered hexagonal structures, as candidate materials used for next...
Ternary M_(n+1)AX_n phases with layered hexagonal structures, as candidate materials used for next-g...
Nanolaminated Mn+1AXn phases as candidate materials for next generation nuclear reactor applications...
During investigations of novel material types with uses in future nuclear technologies (ITER/DEMO an...
The family of layered carbides and nitrides known as MAX phase ceramics combine many attractive prop...
Phase transitions induced in hcp M(n+1)AX(n) phases (Ti2AlN, Ti2AlC, and Ti4AlN3) by 1 MeV Au+ ion i...
Materials within nuclear reactors experience some of the harshest environments currently known to ma...
Recent developments in the synthesis of MAX phases have successfully introduced phases incorporating...
For the structure materials applied in the innovative nuclear energy system, the strongly environmen...
Synthesis, characterisation and density functional theory calculations have been combined to examine...
The structural transitions of Ti3AlC2 induced by ion irradiation were investigated over a wide fluen...
The energy dissipation pathways of electronic and nuclear energy loss (Se and Sn, respectively) duri...
Both experimental approach and atomistic simulations are performed in order to investigate the influ...
Titanium aluminide (TiAl) alloys were initially developed for moderate temperature (600–850 °C) appl...
One of the essential tasks of modern materials science is the studying of the interaction of various...