Locally-Actuated Graphene-Based Nano-Electro-Mechanical Switch

Micromachines (Basel). 2016 Jul 19;7(7):124. doi: 10.3390/mi7070124.

Abstract

The graphene nano-electro-mechanical switches are promising components due to their outstanding switching performance. However, most of the reported devices suffered from a large actuation voltages, hindering them from the integration in the conventional complementary metal-oxide-semiconductor (CMOS) circuit. In this work, we demonstrated the graphene nano-electro-mechanical switches with the local actuation electrode via conventional nanofabrication techniques. Both cantilever-type and double-clamped beam switches were fabricated. These devices exhibited the sharp switching, reversible operation cycles, high on/off ratio, and a low actuation voltage of below 5 V, which were compatible with the CMOS circuit requirements.

Keywords: graphene; nano-electro-mechanical switch; nano-electro-mechanical system; nanofabrication.