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  3. Microelectronics and Nanometer Structures
  4. Fabrication of top-gated epitaxial graphene nanoribbon FETs using hydrogen-silsesquioxane
Details
Category: Microelectronics and Nanometer Structures
By MTech Projects
MTech Projects
06.Apr
Hits: 1

Fabrication of top-gated epitaxial graphene nanoribbon FETs using hydrogen-silsesquioxane

PROJECT TITLE :

Fabrication of top-gated epitaxial graphene nanoribbon FETs using hydrogen-silsesquioxane

ABSTRACT:

Top-gated epitaxial graphene nanoribbon (EGNR) field effect transistors (FETs) were fabricated on epitaxial graphene substrates which demonstrated the opening of a substantial bandgap. Hydrogen silsesquioxane (HSQ) was used for the patterning of 10 nm size linewidth as well as a seed layer for atomic layer deposition (ALD) of a high-k dielectric aluminum oxide (Al2O3). It is found that the resolution of the patterning is affected by the development temperature, electron beam dose, and substrate materials. The chosen gate stack of HSQ followed by Al2O3 ALD permits stable device performance and enables the demonstration of the EGNR-FET.

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Previous article: Effect of functionalization on the electrostatic charging, tunneling, and Raman spectroscopy of epitaxial graphene Effect of functionalization on the electrostatic charging, tunneling, and Raman spectroscopy of epitaxial graphene Next article: Enormous shrinkage of carbon nanotubes by supersonic stress and low-acceleration electron beam irradiation Enormous shrinkage of carbon nanotubes by supersonic stress and low-acceleration electron beam irradiation
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