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Self-integration of nanowires into circuits via guided growth.


ABSTRACT: The ability to assemble discrete nanowires (NWs) with nanoscale precision on a substrate is the key to their integration into circuits and other functional systems. We demonstrate a bottom-up approach for massively parallel deterministic assembly of discrete NWs based on surface-guided horizontal growth from nanopatterned catalyst. The guided growth and the catalyst nanopattern define the direction and length, and the position of each NW, respectively, both with unprecedented precision and yield, without the need for postgrowth assembly. We used these highly ordered NW arrays for the parallel production of hundreds of independently addressable single-NW field-effect transistors, showing up to 85% yield of working devices. Furthermore, we applied this approach for the integration of 14 discrete NWs into an electronic circuit operating as a three-bit address decoder. These results demonstrate the feasibility of massively parallel "self-integration" of NWs into electronic circuits and functional systems based on guided growth.

SUBMITTER: Schvartzman M 

PROVIDER: S-EPMC3780857 | biostudies-other | 2013 Sep

REPOSITORIES: biostudies-other

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Self-integration of nanowires into circuits via guided growth.

Schvartzman Mark M   Tsivion David D   Mahalu Diana D   Raslin Olga O   Joselevich Ernesto E  

Proceedings of the National Academy of Sciences of the United States of America 20130731 38


The ability to assemble discrete nanowires (NWs) with nanoscale precision on a substrate is the key to their integration into circuits and other functional systems. We demonstrate a bottom-up approach for massively parallel deterministic assembly of discrete NWs based on surface-guided horizontal growth from nanopatterned catalyst. The guided growth and the catalyst nanopattern define the direction and length, and the position of each NW, respectively, both with unprecedented precision and yield  ...[more]

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