CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-2) and 210 keV, 1 x 10(16) Se ions cm(-2) in single crystals of MgO(001) and subsequent thermal annealing at a temperature of 1300 K, The structural properties and the orientation relationship between the CdSe and the MgO are investigated using cross-sectional transmission electron microscopy (XTEM). The crystal structure of the nanoclusters depends on their size. The smallest nanoclusters with a size below 5 nm have the cubic rocksalt crystal structure. The larger nanoclusters have a different (most likely the cubic sphalerite) crystal structure. The defect evolution in the sample after ion implantation and during thermal annealing is invest...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-...
Embedded CdSe nanoclusters were created in MgO by ion implantation of I x 10(16) Cd and 1 x 10(16) S...
Embedded CdSe nanoclusters were created in MgO by ion implantation of I x 10(16) Cd and 1 x 10(16) S...
Embedded CdSe nanoclusters were created in MgO by ion implantation of I x 10(16) Cd and 1 x 10(16) S...
Embedded CdSe nanoclusters were created in MgO by ion implantation of I x 10(16) Cd and 1 x 10(16) S...
Embedded CdSe nanoclusters were created in MgO by ion implantation of I x 10(16) Cd and 1 x 10(16) S...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 × 10^16 Cd ions cm-2 ...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-...
Embedded CdSe nanoclusters were created in MgO by ion implantation of I x 10(16) Cd and 1 x 10(16) S...
Embedded CdSe nanoclusters were created in MgO by ion implantation of I x 10(16) Cd and 1 x 10(16) S...
Embedded CdSe nanoclusters were created in MgO by ion implantation of I x 10(16) Cd and 1 x 10(16) S...
Embedded CdSe nanoclusters were created in MgO by ion implantation of I x 10(16) Cd and 1 x 10(16) S...
Embedded CdSe nanoclusters were created in MgO by ion implantation of I x 10(16) Cd and 1 x 10(16) S...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 × 10^16 Cd ions cm-2 ...
CdSe nanoclusters are created in MgO by means of co-implantation of 280 keV, 1 x 10(16) Cd ions cm(-...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...
The band gap as well as the optical and structural properties of semiconductor CdSe nanoclusters cha...