Core-shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties because of the bending resulting from the lattice mismatch between core and shell material. The bending of NWs can be readily observed by electron microscopy. Using X-ray diffraction analysis with a micro- and nano-focused beam, the bending radii found by the microscopic investigations are confirmed and the strain in the NW core is analyzed. For that purpose, a kinematical diffraction theory for highly bent crystals is developed. The homogeneity of the bending and strain is studied along the growth axis of the NWs, and it is found that the lower parts, i.e. close to the substrate/wire interface, are bent less than the parts further up. Extreme be...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
We have investigated strained GaAs-GaInP core-shell nanowires using transmission electron microscopy...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...
Core-shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
Core–shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
Core-shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
\u3cp\u3eNanowires have emerged as a promising platform for the development of novel and high-qualit...
We have investigated strained GaAs-GaInP core-shell nanowires using transmission electron microscopy...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
We have investigated strained GaAs-GaInP core-shell nanowires using transmission electron microscopy...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...
Core-shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
Core–shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
Core-shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
\u3cp\u3eNanowires have emerged as a promising platform for the development of novel and high-qualit...
We have investigated strained GaAs-GaInP core-shell nanowires using transmission electron microscopy...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
We have investigated strained GaAs-GaInP core-shell nanowires using transmission electron microscopy...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...