Utilization of a buffered dielectric to achieve high field-effect carrier mobility in graphene transistors.

Farmer, Damon B; Chiu, Hsin-Ying; Lin, Yu-Ming; Jenkins, Keith A; Xia, Fengnian; Avouris, Phaedon · Nano Lett · 2009

basic_science · Level V

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Abstract

We utilize an organic polymer buffer layer between graphene and conventional gate dielectrics in top-gated graphene transistors. Unlike other insulators, this dielectric stack does not significantly degrade carrier mobility, allowing for high field-effect mobilities to be retained in top-gate operation. This is demonstrated in both two-point and four-point analysis and in the high-frequency operation of a graphene transistor. Temperature dependence of the carrier mobility suggests that phonons are the dominant scatterers in these devices.

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