ZnO/MgO quasi core-shell quantum dots (QDs) were grown by a metal-organic chemical vapor deposition method on silicon substrates. The core-shell structure was well-characterized by a combination of cross-sectional transmission electron microscopy and angle-resolved X-ray photoelectron spectroscopy (XPS). Valence band XPS measurements were performed to investigate the effects of MgO shell layer on the energy band of ZnO/MgO QDs. Photoluminescence (PL) emission from the QDs showed remarkable enhancement after the growth of the MgO layer. In addition, exciton binding energy of 118 +/- 5 meV in the ZnO/MgO QDs was obtained from temperature-dependent PL.status: publishe
We report synthesis and spectroscopic characterization of sol-gel derived zinc oxide (ZnO) quantum d...
We report on photoluminescence measurements of Mg0.2Zn0.8O/ZnO/Mg0.2Zn0.8O multishell layers on ZnO ...
International audienceThis study reports a synthesis by the sol-gel method of stable and size-contro...
The authors report on reproducible growth of ZnMgO quantum dots (QDs) by a metal organic chemical va...
Zinc oxide (ZnO) quantum dots (QDs) were fabricated on silicon substrates by metal organic chemical ...
Zinc oxide (ZnO) quantum dots (QDs) were fabricated on silicon substrates by metal organic chemical ...
ZnO/Zn0.8Mg0.2O multiple-quantum-well (MQW) nanorods with a different number of periods and well wid...
Highly efficient and all-solution processed quantum dot light-emitting diodes (QLEDs) with high perf...
ZnO/Zn0.8Mg0.2O multiple-quantum-well (MQW) nanorods with a different number of periods and well wid...
Thin films of zinc oxide–carbon 60 (ZnO–C60) core–shell quantum dots (QDs) prepared by a simple chem...
The ZnOZn 0.85Mg 0.15O multiple quantum wells (MQWs) were fabricated on Si(111) substrates by plasma...
© 2017 IOP Publishing Ltd.The room temperature photoluminescence from ZnO/MgO core/shell nanowires (...
The room temperature photoluminescence from ZnO/MgO core/shell nanowires (NWs) grown by a simple two...
The room temperature photoluminescence from ZnO/MgO core/shell nanowires (NWs) grown by a simple two...
The effect of shell thickness on the performance of all-inorganic quantum dot light-emitting diodes ...
We report synthesis and spectroscopic characterization of sol-gel derived zinc oxide (ZnO) quantum d...
We report on photoluminescence measurements of Mg0.2Zn0.8O/ZnO/Mg0.2Zn0.8O multishell layers on ZnO ...
International audienceThis study reports a synthesis by the sol-gel method of stable and size-contro...
The authors report on reproducible growth of ZnMgO quantum dots (QDs) by a metal organic chemical va...
Zinc oxide (ZnO) quantum dots (QDs) were fabricated on silicon substrates by metal organic chemical ...
Zinc oxide (ZnO) quantum dots (QDs) were fabricated on silicon substrates by metal organic chemical ...
ZnO/Zn0.8Mg0.2O multiple-quantum-well (MQW) nanorods with a different number of periods and well wid...
Highly efficient and all-solution processed quantum dot light-emitting diodes (QLEDs) with high perf...
ZnO/Zn0.8Mg0.2O multiple-quantum-well (MQW) nanorods with a different number of periods and well wid...
Thin films of zinc oxide–carbon 60 (ZnO–C60) core–shell quantum dots (QDs) prepared by a simple chem...
The ZnOZn 0.85Mg 0.15O multiple quantum wells (MQWs) were fabricated on Si(111) substrates by plasma...
© 2017 IOP Publishing Ltd.The room temperature photoluminescence from ZnO/MgO core/shell nanowires (...
The room temperature photoluminescence from ZnO/MgO core/shell nanowires (NWs) grown by a simple two...
The room temperature photoluminescence from ZnO/MgO core/shell nanowires (NWs) grown by a simple two...
The effect of shell thickness on the performance of all-inorganic quantum dot light-emitting diodes ...
We report synthesis and spectroscopic characterization of sol-gel derived zinc oxide (ZnO) quantum d...
We report on photoluminescence measurements of Mg0.2Zn0.8O/ZnO/Mg0.2Zn0.8O multishell layers on ZnO ...
International audienceThis study reports a synthesis by the sol-gel method of stable and size-contro...