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Passivating Graphene and Suppressing Interfacial Phonon Scattering with Mechanically Transferred Large-Area Ga2O3.


ABSTRACT: We demonstrate a large-area passivation layer for graphene by mechanical transfer of ultrathin amorphous Ga2O3 synthesized on liquid Ga metal. A comparison of temperature-dependent electrical measurements of millimeter-scale passivated and bare graphene on SiO2/Si indicates that the passivated graphene maintains its high field effect mobility desirable for applications. Surprisingly, the temperature-dependent resistivity is reduced in passivated graphene over a range of temperatures below 220 K, due to the interplay of screening of the surface optical phonon modes of the SiO2 by high-dielectric-constant Ga2O3 and the relatively high characteristic phonon frequencies of Ga2O3. Raman spectroscopy and electrical measurements indicate that Ga2O3 passivation also protects graphene from further processing such as plasma-enhanced atomic layer deposition of Al2O3.

SUBMITTER: Gebert M 

PROVIDER: S-EPMC9837877 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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Passivating Graphene and Suppressing Interfacial Phonon Scattering with Mechanically Transferred Large-Area Ga<sub>2</sub>O<sub>3</sub>.

Gebert Matthew M   Bhattacharyya Semonti S   Bounds Christopher C CC   Syed Nitu N   Daeneke Torben T   Fuhrer Michael S MS  

Nano letters 20221121 1


We demonstrate a large-area passivation layer for graphene by mechanical transfer of ultrathin amorphous Ga<sub>2</sub>O<sub>3</sub> synthesized on liquid Ga metal. A comparison of temperature-dependent electrical measurements of millimeter-scale passivated and bare graphene on SiO<sub>2</sub>/Si indicates that the passivated graphene maintains its high field effect mobility desirable for applications. Surprisingly, the temperature-dependent resistivity is reduced in passivated graphene over a r  ...[more]

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