\u3cp\u3eNanowires have emerged as a promising platform for the development of novel and high-quality heterostructures at large lattice misfit, inaccessible in a thin film configuration. However, despite core-shell nanowires allowing a very efficient elastic release of the misfit strain, the growth of highly uniform arrays of nanowire heterostructures still represents a challenge, for example due to a strain-induced bending morphology. Here we investigate the bending of wurtzite GaP/In \u3csub\u3ex\u3c/sub\u3e Ga\u3csub\u3e1-x\u3c/sub\u3eP core-shell nanowires using transmission electron microscopy and energy dispersive x-ray spectroscopy, both in terms of geometric and compositional asymmetry with respect to the longitudinal axis. We compa...
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...
We have investigated strained GaAs-GaInP core-shell nanowires using transmission electron microscopy...
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...
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...
Core-shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
Controlling nanomaterial shape beyond its basic dimensionality is a concurrent challenge tackled by ...
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...
We have investigated strained GaAs-GaInP core-shell nanowires using transmission electron microscopy...
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...
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...
Core-shell nanowires (NWs) with asymmetric shells allow for strain engineering of NW properties beca...
Controlling nanomaterial shape beyond its basic dimensionality is a concurrent challenge tackled by ...
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...
We have investigated strained GaAs-GaInP core-shell nanowires using transmission electron microscopy...