Thanks to their unique morphology, nanowires have enabled integration of materials in a way that was not possible before with thin film technology. In turn, this opens new avenues for applications in the areas of energy harvesting, electronics, and optoelectronics. This is particularly true for axial heterostructures, while core shell systems are limited by the appearance of strain-induced dislocations. Even more challenging is the detection and understanding of these defects. We combine geometrical phase analysis with finite element strain simulations to quantify and determine the origin of the lattice distortion in core shell nanowire structures. Such combination provides a powerful insight in the origin and characteristics of edge disloc...
Combination of mismatched materials in semiconductor nanowire heterostructures offers a freedom of b...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
The growth of heteroepitaxially strained semiconductors at the nanoscale enables tailoring of materi...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
In the past decade, core/shell nanowires (NWs) have attracted much attention due to the broad variet...
Strain engineering is a powerful tool for designing nanowires with tailored properties for a variety...
Semiconductor nanowires have increased the palette of possible heterostructures thanks to their more...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...
Combination of mismatched materials in semiconductor nanowire heterostructures offers a freedom of b...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
We have investigated strained GaAs-GaInP core-shell nanowires using transmission electron microscopy...
Combination of mismatched materials in semiconductor nanowire heterostructures offers a freedom of b...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
The growth of heteroepitaxially strained semiconductors at the nanoscale enables tailoring of materi...
We propose a comprehensive description of the strain configuration induced by the lattice mismatch i...
In the past decade, core/shell nanowires (NWs) have attracted much attention due to the broad variet...
Strain engineering is a powerful tool for designing nanowires with tailored properties for a variety...
Semiconductor nanowires have increased the palette of possible heterostructures thanks to their more...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...
The authors study the elastic deformation held in lattice-mismatched core-shell nanowires with singl...
Combination of mismatched materials in semiconductor nanowire heterostructures offers a freedom of b...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
We have investigated strained GaAs-GaInP core-shell nanowires using transmission electron microscopy...
Combination of mismatched materials in semiconductor nanowire heterostructures offers a freedom of b...
Nanowires have emerged as a promising platform for the development of novel and high-quality heteros...
The growth of heteroepitaxially strained semiconductors at the nanoscale enables tailoring of materi...