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1. Chapter Spatial Atomic Layer Deposition

4. Spatial Atomic Layer Deposition

5. Atmospheric Plasma-Enhanced Spatial Chemical Vapor Deposition of SiO2 Using Trivinylmethoxysilane and Oxygen Plasma

6. A non thermal plasma dedicated to assist the deposition of thin films

7. Développement d’une Source Plasma en aide au Dépôt de Couche Mince à Pression Atmosphérique

8. Development of the Spatial Atomic Layer Deposition (SALD) technique for the fabrication of p-type thin films of highly conductive copper (I) oxide

9. Développement et caractérisation d’une source plasma à pression atmosphérique réalisée par impression 3D pour l’assistance d’un procédé SALD

10. Use of Computational Fluid Dynamics (CFD) simulations to predict and tune the deposition mode in close-proximity Spatial Atomic Layer Deposition (SALD)

11. Metal films by Laser Ablation Backwriting on Glass

12. Use of computational fluid Dynamics simulations to tune the deposition regime in close-proximity spatial atomic layer deposition

13. New Generation Transparent Conductive Materials

15. Atmospheric Plasma-Enhanced Spatial Chemical Vapor Deposition of SiO2Using Trivinylmethoxysilane and Oxygen Plasma

16. Influence of the Geometric Parameters on the Deposition Mode in Spatial Atomic Layer Deposition: A Novel Approach to Area-Selective Deposition.

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