Abstract: We present a quantum-accurate multiscale study of how hydrogen-filled discoidal "platelet'' defects grow inside a silicon crystal. Dynamical simulations of a 10-nm-diameter platelet reveal that H-2 molecules form at its internal surfaces, diffuse, and dissociate at its perimeter, where they both induce and stabilize the breaking up of highly stressed silicon bonds. A buildup of H-2 internal pressure is neither needed for nor allowed by this stress-corrosion growth mechanism, at odds with previous models. Slow platelet growth up to micrometric sizes is predicted as a consequence, making atomically smooth crystal cleavage possible in implantation experiments
International audienceWe used ion implantation of H and He in Si and thermal treatments to produce t...
We investigate possible structures of hydrogen-induced platelets in the (100) crystallographic plane...
International audienceWe used ion implantation of H and He in Si and thermal treatments to produce t...
We present a quantum-accurate multiscale study of how hydrogen-filled discoidal "platelet'' defects ...
H ion implantation into crystalline Si is known to result in the precipitation of planar defects in ...
cited By 1International audienceHydrogen implantation at room temperature into monocrystalline silic...
cited By 1International audienceHydrogen implantation at room temperature into monocrystalline silic...
H ion implantation into crystalline Si is known to result in the precipitation of planar defects in ...
H ion implantation into crystalline Si is known to result in the precipitation of planar defects in ...
Hydrogen implantation at room temperature into monocrystalline silicon leads to the formation of com...
Hydrogen implantation at room temperature into monocrystalline silicon leads to the formation of com...
Hydrogen implantation at room temperature into monocrystalline silicon leads to the formation of com...
Hydrogen implantation at room temperature into monocrystalline silicon leads to the formation of com...
Hydrogen implantation at room temperature into monocrystalline silicon leads to the formation of com...
International audienceWe used ion implantation of H and He in Si and thermal treatments to produce t...
International audienceWe used ion implantation of H and He in Si and thermal treatments to produce t...
We investigate possible structures of hydrogen-induced platelets in the (100) crystallographic plane...
International audienceWe used ion implantation of H and He in Si and thermal treatments to produce t...
We present a quantum-accurate multiscale study of how hydrogen-filled discoidal "platelet'' defects ...
H ion implantation into crystalline Si is known to result in the precipitation of planar defects in ...
cited By 1International audienceHydrogen implantation at room temperature into monocrystalline silic...
cited By 1International audienceHydrogen implantation at room temperature into monocrystalline silic...
H ion implantation into crystalline Si is known to result in the precipitation of planar defects in ...
H ion implantation into crystalline Si is known to result in the precipitation of planar defects in ...
Hydrogen implantation at room temperature into monocrystalline silicon leads to the formation of com...
Hydrogen implantation at room temperature into monocrystalline silicon leads to the formation of com...
Hydrogen implantation at room temperature into monocrystalline silicon leads to the formation of com...
Hydrogen implantation at room temperature into monocrystalline silicon leads to the formation of com...
Hydrogen implantation at room temperature into monocrystalline silicon leads to the formation of com...
International audienceWe used ion implantation of H and He in Si and thermal treatments to produce t...
International audienceWe used ion implantation of H and He in Si and thermal treatments to produce t...
We investigate possible structures of hydrogen-induced platelets in the (100) crystallographic plane...
International audienceWe used ion implantation of H and He in Si and thermal treatments to produce t...