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1. Phosphorus-Controlled Nanoepitaxy in the Asymmetric Growth of GaAs-InP Core-Shell Bent Nanowires

2. Analytical model of a nanowire-based betavoltaic device.

3. Efficient Wave Optics Modeling of Nanowire Solar Cells Using Rigorous Coupled Wave Analysis

4. Nb/InAs nanowire proximity junctions from Josephson to quantum dot regimes

5. Long indium-rich InGaAs nanowires by SAG-HVPE

6. Electrical characterization of chemical and dielectric passivation of InAs nanowires

7. Optimizations of GaAs Nanowire Solar Cells

9. Josephson Interference due to Orbital States in a Nanowire Proximity Effect Junction

10. Magnetoconductance signatures of subband structure in semiconductor nanowires

11. Temperature-dependent electron mobility in InAs nanowires

12. Trapped charge dynamics in InAs nanowires

13. Electron Transport in InAs-InAlAs Core-Shell Nanowires

14. Phosphorus-Controlled Nanoepitaxy of Asymmetric GaAs–InP Core–Shell Bent Nanowires: Implications for Bottom-Up Nanowire Transistors and Sensors.

16. Importance of As and Ga Balance in Achieving Long GaAs Nanowires by Selective Area Epitaxy

17. Detection of Be dopant pairing in VLS grown GaAs nanowires with twinning superlattices

18. Selective Area Growth of GaAs Nanowires and Microplatelet Arrays on Silicon by Hydride Vapor-Phase Epitaxy

23. Selective Area Growth by Hydride Vapor Phase Epitaxy and Optical Properties of InAs Nanowire Arrays

26. Long catalyst-free InAs nanowires grown on silicon by HVPE

31. Optical and structural analysis of ultra-long GaAs nanowires after nitrogen-plasma passivation

33. Dynamics of Gold Droplet Formation on SiO2/Si(111) Surface

35. (Invited) Effect of the Plasma Etching on InAsP/InP Quantum Well Structures Measured through Low Temperature Micro-Photoluminescence and Cathodoluminescence

39. Si Doping of Vapor–Liquid–Solid GaAs Nanowires: n-Type or p-Type?

43. Modelling thermoelectric transport in III–V nanowires using a Boltzmann transport approach: a review.

45. Analytical model of surface depletion in GaAs nanowires.

48. Analytical description of the metal-assisted growth of III–V nanowires: Axial and radial growths.

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