Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deformation transmission electron microscopy. Both zinc-blende and wurtzite structured GaAs nanowires showed essentially elastic deformation until bending failure associated with buckling occurred. These nanowires fail at compressive stresses of ∼5.4 GPa and 6.2 GPa, respectively, which are close to those values calculated by molecular dynamics simulations. Interestingly, wurtzite nanowires with a high density of stacking faults fail at a very high compressive stress of ∼9.0 GPa, demonstrating that the nanowires can be strengthened through defect engineering. The reasons for the observed phenomenon are discussed
A current understanding is that materials with perfect structures have better mechanical properties....
A current understanding is that materials with perfect structures have better mechanical properties....
The structural versatility of semiconducting gallium arsenide (GaAs) nanowires (NWs) provides an exc...
Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deforma...
Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deforma...
Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deforma...
Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deforma...
Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deforma...
Stacking faults (SFs) are commonly observed crystalline defects in III–V semiconductor nanowires (NW...
Stacking faults (SFs) are commonly observed crystalline defects in III–V semiconductor nanowires (NW...
Stacking faults (SFs) are commonly observed crystalline defects in III–V semiconductor nanowires (NW...
A current understanding is that materials with perfect structures have better mechanical properties....
A current understanding is that materials with perfect structures have better mechanical properties....
A current understanding is that materials with perfect structures have better mechanical properties....
Semiconductor nanowires (NWs) show tremendous applications in micro/nano-electro-mechanical systems....
A current understanding is that materials with perfect structures have better mechanical properties....
A current understanding is that materials with perfect structures have better mechanical properties....
The structural versatility of semiconducting gallium arsenide (GaAs) nanowires (NWs) provides an exc...
Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deforma...
Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deforma...
Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deforma...
Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deforma...
Quantitative mechanical testing of single-crystal GaAs nanowires was conducted using in situ deforma...
Stacking faults (SFs) are commonly observed crystalline defects in III–V semiconductor nanowires (NW...
Stacking faults (SFs) are commonly observed crystalline defects in III–V semiconductor nanowires (NW...
Stacking faults (SFs) are commonly observed crystalline defects in III–V semiconductor nanowires (NW...
A current understanding is that materials with perfect structures have better mechanical properties....
A current understanding is that materials with perfect structures have better mechanical properties....
A current understanding is that materials with perfect structures have better mechanical properties....
Semiconductor nanowires (NWs) show tremendous applications in micro/nano-electro-mechanical systems....
A current understanding is that materials with perfect structures have better mechanical properties....
A current understanding is that materials with perfect structures have better mechanical properties....
The structural versatility of semiconducting gallium arsenide (GaAs) nanowires (NWs) provides an exc...