Mn doping in ZnS nanoplatelets has been shown to induce a structural transition from the wurtzite to the zinc blende phase. We trace the origin of this transition to quantum confinement effects, which shift the valence band maximum of the wurtzite and zinc blende polymorphs of ZnS at different rates as a function of the nanocrystal size, arising from different effective hole masses in the two structures. This modifies the covalency associated with Mn incorporation and is reflected in the size-dependent binding energy difference for the two structures
Electron spin resonance and electronic spectroscopy techniques were used to study the symmetry and e...
ZnS quantum dots (QDs) have limited application potential in QD-sensitized solar cells because of th...
Undoped and Mn-doped ZnS nanocrystals were produced by the microwave-assisted solvothermal method an...
Mn doping in ZnS nanoplatelets has been shown to induce a structural transition from the wurtzite to...
We report a reversible phase transformation of platelet-shaped ZnS nanostructures between wurtzite (...
We report a reversible phase transformation of platelet-shaped ZnS nanostructures between wurtzite (...
It has been an outstanding problem that a semiconducting host in the bulk form can be doped to a lar...
[[abstract]]X-ray-absorption fine-structure measurements were carried out to probe the local environ...
Although impurity doping of nanocrystals is essential in controlling their physical properties for v...
Mn-doped ZnS nanocrystals were synthesized via a facile hydrothermal method with the assistant of pr...
We report the effect of Mn self-doping in Mn catalyzed ZnS nanostructures grown via vapor liquid sol...
Mn-doped ZnS nanocrystals of about 3 nm diameter were synthesized by a wet chemical method. X-ray di...
It is beyond common understanding that the photoluminescence lifetime of the transition T-4(1)-->(6)...
This paper describes the equilibrium morphologies of zinc sulfide nanoparticles in the wurtzite phas...
The perfect switching between crystal phases with different electronic structure in III-V nanowires ...
Electron spin resonance and electronic spectroscopy techniques were used to study the symmetry and e...
ZnS quantum dots (QDs) have limited application potential in QD-sensitized solar cells because of th...
Undoped and Mn-doped ZnS nanocrystals were produced by the microwave-assisted solvothermal method an...
Mn doping in ZnS nanoplatelets has been shown to induce a structural transition from the wurtzite to...
We report a reversible phase transformation of platelet-shaped ZnS nanostructures between wurtzite (...
We report a reversible phase transformation of platelet-shaped ZnS nanostructures between wurtzite (...
It has been an outstanding problem that a semiconducting host in the bulk form can be doped to a lar...
[[abstract]]X-ray-absorption fine-structure measurements were carried out to probe the local environ...
Although impurity doping of nanocrystals is essential in controlling their physical properties for v...
Mn-doped ZnS nanocrystals were synthesized via a facile hydrothermal method with the assistant of pr...
We report the effect of Mn self-doping in Mn catalyzed ZnS nanostructures grown via vapor liquid sol...
Mn-doped ZnS nanocrystals of about 3 nm diameter were synthesized by a wet chemical method. X-ray di...
It is beyond common understanding that the photoluminescence lifetime of the transition T-4(1)-->(6)...
This paper describes the equilibrium morphologies of zinc sulfide nanoparticles in the wurtzite phas...
The perfect switching between crystal phases with different electronic structure in III-V nanowires ...
Electron spin resonance and electronic spectroscopy techniques were used to study the symmetry and e...
ZnS quantum dots (QDs) have limited application potential in QD-sensitized solar cells because of th...
Undoped and Mn-doped ZnS nanocrystals were produced by the microwave-assisted solvothermal method an...