Detailed defect structure of dendrite formation was studied in order to connect the mesoscopic with the atomistic structure. It was demonstrated that twinning and stacking fault formation play a central role in the growth of electrodeposited Ag dendrites. The broad faces of Ag dendrites and the main trunk growth direction were found to be ((1) over bar 11) and [(1) over bar1 (2) over bar], respectively. Dendrite branches also formed and grew from the main trunk parallel to the [12 (1) over bar] and [(211) over bar] crystallographic directions. Twins and stacking faults were found to reside on the {111} crystallographic planes, as expected for a face centered cubic (FCC) Ag crystal. Using electron back scattered diffraction (EBSD) we found t...
The formation of feathery grains during semi-continuous casting of Al-alloys [1, 2] is an interestin...
The dendritic structure of cylindrical crystals grown from molten lead by Bridgman method using glas...
The favorable growth kinetics of twinned dendrites can be explained by their complex morphology, mul...
Silver dendrites were prepared by electrochemical deposition. The structures of the Ag dendrites, th...
Dendritic silver and copper crystals were produced via Galvanic replacement reactions on zinc and al...
Silver dendritic nanonstructures obtained by the potentiostatic electrolysis from different electrol...
Dendritic structures are widely present in nature, from snowflakes to dendritic cells. However, thei...
International audienceThe microstructural evolution during light annealing of a representative low s...
A multiscale approach, combining structural and microstructural characterizations, was applied to ta...
THE similarity of many patterns formed in non-equilibrium growth processes in physics, chemistry and...
Precession patterns taken with carefully monobromated radiation show that stacking faults are prese...
Twinned dendrites appearing in an Al-26 wtpct Zn alloy have been quenched during growth using a spec...
A dendrite is one of the most esthetically pleasing structures, with the best-known example being sn...
Ni-based single crystal superalloys contain microstructural regions that are separated by low-angle ...
AbstractNickel-based single crystal superalloys oriented along the <001> and <011> lattice direction...
The formation of feathery grains during semi-continuous casting of Al-alloys [1, 2] is an interestin...
The dendritic structure of cylindrical crystals grown from molten lead by Bridgman method using glas...
The favorable growth kinetics of twinned dendrites can be explained by their complex morphology, mul...
Silver dendrites were prepared by electrochemical deposition. The structures of the Ag dendrites, th...
Dendritic silver and copper crystals were produced via Galvanic replacement reactions on zinc and al...
Silver dendritic nanonstructures obtained by the potentiostatic electrolysis from different electrol...
Dendritic structures are widely present in nature, from snowflakes to dendritic cells. However, thei...
International audienceThe microstructural evolution during light annealing of a representative low s...
A multiscale approach, combining structural and microstructural characterizations, was applied to ta...
THE similarity of many patterns formed in non-equilibrium growth processes in physics, chemistry and...
Precession patterns taken with carefully monobromated radiation show that stacking faults are prese...
Twinned dendrites appearing in an Al-26 wtpct Zn alloy have been quenched during growth using a spec...
A dendrite is one of the most esthetically pleasing structures, with the best-known example being sn...
Ni-based single crystal superalloys contain microstructural regions that are separated by low-angle ...
AbstractNickel-based single crystal superalloys oriented along the <001> and <011> lattice direction...
The formation of feathery grains during semi-continuous casting of Al-alloys [1, 2] is an interestin...
The dendritic structure of cylindrical crystals grown from molten lead by Bridgman method using glas...
The favorable growth kinetics of twinned dendrites can be explained by their complex morphology, mul...