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30 results on '"Nalin Mehta, Ankit"'

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1. Top-Gate Stack Engineering Featuring a High-κ Gadolinium Aluminate Interfacial Layer for Field-Effect Transistors Based on Two-Dimensional Transition-Metal Dichalcogenides

2. Direct Assessment of Defective Regions in Monolayer MoS2 Field-Effect Transistors through In Situ Scanning Probe Microscopy Measurements

4. Reactive plasma cleaning and restoration of transition metal dichalcogenide monolayers

9. Engineering Wafer-Scale Epitaxial Two-Dimensional Materials through Sapphire Template Screening for Advanced High-Performance Nanoelectronics

16. Two-Dimensional Crystal Grain Size Tuning in WS2 Atomic Layer Deposition: An Insight in the Nucleation Mechanism

17. Direct Assessment of Defective Regions in Monolayer MoS2Field-Effect Transistors through In SituScanning Probe Microscopy Measurements

18. Chemical Vapor Deposition of a Single-Crystalline MoS2Monolayer through Anisotropic 2D Crystal Growth on Stepped Sapphire Surface

19. Layer-controlled epitaxy of 2D semiconductors: bridging nanoscale phenomena to wafer-scale uniformity

21. Plasma-Enhanced Atomic Layer Deposition of Two-Dimensional WS2 from WF6, H2 Plasma, and H2S

23. Formation mechanism of 2D SnS2 and SnS by chemical vapor deposition using SnCl4 and H2S.

24. Two-Dimensional Crystal Grain Size Tuning in WS2Atomic Layer Deposition: An Insight in the Nucleation Mechanism

25. (Digital Presentation) Selective SiGe Vapor Etching Using Br2in View of Nanosheet Device Isolation

26. Direct Assessment of Defective Regions in Monolayer MoS 2 Field-Effect Transistors through In Situ Scanning Probe Microscopy Measurements.

27. Chemical Vapor Deposition of a Single-Crystalline MoS 2 Monolayer through Anisotropic 2D Crystal Growth on Stepped Sapphire Surface.

28. High-Density Patterning of InGaZnO by CH 4 : a Comparative Study of RIE and Pulsed Plasma ALE.

29. Unravelling stacking order in epitaxial bilayer MX 2 using 4D-STEM with unsupervised learning.

30. Peculiar alignment and strain of 2D WSe 2 grown by van der Waals epitaxy on reconstructed sapphire surfaces.

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