Contact-induced damage has been studied in single-crystal (wurtzite) ZnO by cross-sectional transmission electron microscopy (XTEM) and scanning cathodoluminescence(CL) monochromatic imaging. XTEM reveals that the prime deformation mechanism in ZnO is the nucleation of slip on both the basal and pyramidal planes. Some indication of dislocation pinning was observed on the basal slip planes. No evidence of either a phase transformation or cracking was observed by XTEM in samples loaded up to 50 mN with an ∼4.2 μm radius spherical indenter. CL imaging reveals a quenching of near-gap emission by deformation-produced defects. Both XTEM and CL show that this comparatively soft material exhibits extensive deformation damage and that defects can pr...
High-energy (\u3e1.6 MeV) electrons create acceptors and donors in single-crystal ZnO. Greater damag...
Mechanical properties of nanocrystals are in fluenced by atomic defects. Here, we demonstrate the ef...
Mechanical properties of nano crystals are influenced by atomic defects. Here, we demonstrate the ef...
Nanoindentation studies were conducted on a-axis oriented ZnO single crystals. The mechanical proper...
The deformation behavior of bulk ZnO single crystals is studied by a combination of spherical nanoi...
The mechanical properties of zinc oxide epitaxial layers grown on a- and c-axis sapphire have been s...
Dislocation-mediated plasticity in inorganic semiconductors and oxides has attracted increasing rese...
The influence of spherical nanoindentation on the band edge and deep level emission of single crysta...
We have investigated the impact of strain on the incorporation and the properties of extended and po...
The authors used depth-resolved cathodoluminescence spectroscopy and current-voltage measurements to...
This review presents recent research advances in measuring native point defects in ZnO nanostructure...
A combination of depth-resolved electronic and structural techniques reveals that native point defec...
Control and design of native defects in semiconductors are extremely important for industrial applic...
The impact of electronically-active native point defects on ZnO optoelectronic technologies at the n...
To ensure reliability and facilitate the strain engineering of zinc oxide (ZnO) nanowires (NWs), it ...
High-energy (\u3e1.6 MeV) electrons create acceptors and donors in single-crystal ZnO. Greater damag...
Mechanical properties of nanocrystals are in fluenced by atomic defects. Here, we demonstrate the ef...
Mechanical properties of nano crystals are influenced by atomic defects. Here, we demonstrate the ef...
Nanoindentation studies were conducted on a-axis oriented ZnO single crystals. The mechanical proper...
The deformation behavior of bulk ZnO single crystals is studied by a combination of spherical nanoi...
The mechanical properties of zinc oxide epitaxial layers grown on a- and c-axis sapphire have been s...
Dislocation-mediated plasticity in inorganic semiconductors and oxides has attracted increasing rese...
The influence of spherical nanoindentation on the band edge and deep level emission of single crysta...
We have investigated the impact of strain on the incorporation and the properties of extended and po...
The authors used depth-resolved cathodoluminescence spectroscopy and current-voltage measurements to...
This review presents recent research advances in measuring native point defects in ZnO nanostructure...
A combination of depth-resolved electronic and structural techniques reveals that native point defec...
Control and design of native defects in semiconductors are extremely important for industrial applic...
The impact of electronically-active native point defects on ZnO optoelectronic technologies at the n...
To ensure reliability and facilitate the strain engineering of zinc oxide (ZnO) nanowires (NWs), it ...
High-energy (\u3e1.6 MeV) electrons create acceptors and donors in single-crystal ZnO. Greater damag...
Mechanical properties of nanocrystals are in fluenced by atomic defects. Here, we demonstrate the ef...
Mechanical properties of nano crystals are influenced by atomic defects. Here, we demonstrate the ef...