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Atomic layer deposition of Y2O3 on h-BN for a gate stack in graphene FETs

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arxiv 1510.01928 v1 pith:VJLP2YBU submitted 2015-10-07 cond-mat.mtrl-sci

Atomic layer deposition of Y2O3 on h-BN for a gate stack in graphene FETs

classification cond-mat.mtrl-sci
keywords h-bndepositionlayercoveragesurfacey2o3atomicfull
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The combination of h-BN and high-k dielectrics is required for a top gate insulator in miniaturized graphene field-effect transistors because of the low dielectric constant of h-BN. We investigated the deposition of Y2O3 on h-BN using atomic layer deposition. The deposition of Y2O3 on h-BN was confirmed without any buffer layer. An increase in the deposition temperature reduced the surface coverage. The deposition mechanism could be explained by the competition between the desorption and adsorption of the Y precursor on h-BN due to the polarization. Although a full surface coverage was difficult to achieve, the use of an oxidized metal seeding layer on h-BN resulted in a full surface coverage.

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