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Stable and high yield growth of GaP and In0.2Ga0.8As nanowire arrays using  In as a catalyst - Nanoscale (RSC Publishing)
Stable and high yield growth of GaP and In0.2Ga0.8As nanowire arrays using In as a catalyst - Nanoscale (RSC Publishing)

C2N – Actualités
C2N – Actualités

What Triggers Epitaxial Growth of GaN on Graphene? | Crystal Growth & Design
What Triggers Epitaxial Growth of GaN on Graphene? | Crystal Growth & Design

C2N – In-situ Electron Microscopy for Nanomaterial Synthesis
C2N – In-situ Electron Microscopy for Nanomaterial Synthesis

C2N – Frank Glas
C2N – Frank Glas

Induced structural modifications in ZnS nanowires via physical state of  catalyst: Highlights of 15R crystal phase | SpringerLink
Induced structural modifications in ZnS nanowires via physical state of catalyst: Highlights of 15R crystal phase | SpringerLink

Frank GLAS | Materials | Research profile
Frank GLAS | Materials | Research profile

Phys. Rev. Lett. 121, 166101 (2018) - Atomic Step Flow on a Nanofacet
Phys. Rev. Lett. 121, 166101 (2018) - Atomic Step Flow on a Nanofacet

Federico Panciera
Federico Panciera

Volglazen kantoorgebouw met ferme luifels - architectenweb.nl
Volglazen kantoorgebouw met ferme luifels - architectenweb.nl

Frank GLAS | Materials | Research profile
Frank GLAS | Materials | Research profile

C2N – SMART-22 project
C2N – SMART-22 project

Nanofils Semiconducteurs Journées Na onales des
Nanofils Semiconducteurs Journées Na onales des

C2N – SMART-22 project
C2N – SMART-22 project

Frank GLAS | Materials | Research profile
Frank GLAS | Materials | Research profile

Frank GLAS | Materials | Research profile
Frank GLAS | Materials | Research profile

C2N – Frank Glas
C2N – Frank Glas

Stable and high yield growth of GaP and In 0.2 Ga 0.8 As nanowire arrays  using In as a catalyst
Stable and high yield growth of GaP and In 0.2 Ga 0.8 As nanowire arrays using In as a catalyst

C2N – Frank Glas
C2N – Frank Glas

In situ and real-time observation of nanocrystal growth in « NanoMAX », a  modified ETEM - Laboratoire de Physique des Interfaces et des Couches Minces
In situ and real-time observation of nanocrystal growth in « NanoMAX », a modified ETEM - Laboratoire de Physique des Interfaces et des Couches Minces

High Sensitivity Piezogenerator Based on GaN Nanowires †
High Sensitivity Piezogenerator Based on GaN Nanowires †

C2N – SMART-22 project
C2N – SMART-22 project

Frank GLAS | Materials | Research profile
Frank GLAS | Materials | Research profile