Transformable functional nanoscale building blocks with wafer-scale silicon nanowires.

Choi, Sung-Jin; Ahn, Jae-Hyuk; Han, Jin-Woo; Seol, Myeong-Lok; Moon, Dong-Il; Kim, Sungho; Choi, Yang-Kyu · Nano Lett · 2011

basic_science · Level V

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Abstract

Through the fusion of electrostatics and mechanical dynamics, we demonstrate a transformable silicon nanowire (SiNW) field effect transistor (FET) through a wafer-scale top-down approach. By felicitously taking advantage of the proposed electrostatic SiNW-FET with mechanically movable SiNWs, all essential logic gates, including address decoders, can be monolithically integrated into a single device. The unification of various functional devices, such as pn-diodes, FETs, logic gates, and address decoders, can therefore eliminate the complex fabrication issues associated with nanoscale integration. These results represent a step toward the creation of multifunctional and flexible nanoelectronics.

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