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harpun Sämre skrivbord leshchenko iop nanotechnology gap uttömma Ofullständig Munstycke

Gradients of Be-dopant concentration in self-catalyzed GaAs nanowires -  IOPscience
Gradients of Be-dopant concentration in self-catalyzed GaAs nanowires - IOPscience

Gradients of Be-dopant concentration in self-catalyzed GaAs nanowires -  IOPscience
Gradients of Be-dopant concentration in self-catalyzed GaAs nanowires - IOPscience

Anisotropic Gap Structure and Sign Reversal Symmetry in Monolayer Fe(Se,Te)  | Nano Letters
Anisotropic Gap Structure and Sign Reversal Symmetry in Monolayer Fe(Se,Te) | Nano Letters

PDF) Nucleation-limited composition of Al 1-x In x As nanowires
PDF) Nucleation-limited composition of Al 1-x In x As nanowires

Tapering in GaP/GaAsP CMS NWs (a) Axial EDXS linescans of a single... |  Download Scientific Diagram
Tapering in GaP/GaAsP CMS NWs (a) Axial EDXS linescans of a single... | Download Scientific Diagram

Potentialities of selenium nanoparticles in biomedical science - New  Journal of Chemistry (RSC Publishing) DOI:10.1039/D0NJ05884J
Potentialities of selenium nanoparticles in biomedical science - New Journal of Chemistry (RSC Publishing) DOI:10.1039/D0NJ05884J

Assembling your nanowire: an overview of composition tuning in ternary  III–V nanowires
Assembling your nanowire: an overview of composition tuning in ternary III–V nanowires

Does desorption affect the length distributions of nanowires? - IOPscience
Does desorption affect the length distributions of nanowires? - IOPscience

Pseudodirect to Direct Compositional Crossover in Wurtzite GaP/InxGa1–xP  Core–Shell Nanowires | Nano Letters
Pseudodirect to Direct Compositional Crossover in Wurtzite GaP/InxGa1–xP Core–Shell Nanowires | Nano Letters

Ultrathin Te-Doped GaP Nanoantenna with Crystal Phase Transitions | Crystal  Growth & Design
Ultrathin Te-Doped GaP Nanoantenna with Crystal Phase Transitions | Crystal Growth & Design

PDF) Doping profiles during nanowire growth via the vapor-liquid-solid  mechanism
PDF) Doping profiles during nanowire growth via the vapor-liquid-solid mechanism

PDF) Light-emitting p-i-n GaP/GaPAs NW encapsulated in a flexible PDMS  membrane
PDF) Light-emitting p-i-n GaP/GaPAs NW encapsulated in a flexible PDMS membrane

Three-fold Symmetric Doping Mechanism in GaAs Nanowires | Nano Letters
Three-fold Symmetric Doping Mechanism in GaAs Nanowires | Nano Letters

Tuning the morphology of self-assisted GaP nanowires - IOPscience
Tuning the morphology of self-assisted GaP nanowires - IOPscience

Abrupt degenerately-doped silicon nanowire tunnel junctions - IOPscience
Abrupt degenerately-doped silicon nanowire tunnel junctions - IOPscience

Simultaneous Selective-Area and Vapor–Liquid–Solid Growth of InP Nanowire  Arrays | Nano Letters
Simultaneous Selective-Area and Vapor–Liquid–Solid Growth of InP Nanowire Arrays | Nano Letters

Engineering the Size Distributions of Ordered GaAs Nanowires on Silicon |  Nano Letters
Engineering the Size Distributions of Ordered GaAs Nanowires on Silicon | Nano Letters

Formation Mechanism of Twinning Superlattices in Doped GaAs Nanowires | Nano  Letters
Formation Mechanism of Twinning Superlattices in Doped GaAs Nanowires | Nano Letters

Dynamics of Droplet Consumption in Vapor–Liquid–Solid III–V Nanowire Growth  | Crystal Growth & Design
Dynamics of Droplet Consumption in Vapor–Liquid–Solid III–V Nanowire Growth | Crystal Growth & Design

Measuring and Modeling the Growth Dynamics of Self-Catalyzed GaP Nanowire  Arrays | Nano Letters
Measuring and Modeling the Growth Dynamics of Self-Catalyzed GaP Nanowire Arrays | Nano Letters

Modeling the dynamics of interface morphology and crystal phase change in  self-catalyzed GaAs nanowires - IOPscience
Modeling the dynamics of interface morphology and crystal phase change in self-catalyzed GaAs nanowires - IOPscience

Tuning the morphology of self-assisted GaP nanowires - IOPscience
Tuning the morphology of self-assisted GaP nanowires - IOPscience

Gradients of Be-dopant concentration in self-catalyzed GaAs nanowires -  IOPscience
Gradients of Be-dopant concentration in self-catalyzed GaAs nanowires - IOPscience

Defect-Free Axially Stacked GaAs/GaAsP Nanowire Quantum Dots with Strong  Carrier Confinement | Nano Letters
Defect-Free Axially Stacked GaAs/GaAsP Nanowire Quantum Dots with Strong Carrier Confinement | Nano Letters