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DNA sensing by field-effect transistors based on networks of carbon nanotubes
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DNA sensing by field-effect transistors based on networks of carbon nanotubes

Ling Gui Ee, Lain-Jong Li, Keke Zhang, Yangping Xu, Xiaochen Dong, Xinning Ho, See Lee Pooi, Johnson Kasim, Z.X. Shen, John A. Rogers, …
Journal of the American Chemical Society, 卷.129(46), 頁碼.14427-14432
11/2007
PMID: 17973383

摘要

Chemistry (all)
We report on the sensing mechanism of electrical detection of deoxyribonucleic acid (DNA) hybridization for Au- and Cr-contacted field effect transistors based on single-walled carbon nanotube (SWCNT) networks. Barrier height extraction via low-temperature electrical measurement provides direct evidence for the notion that the energy level alignment between electrode and SWCNTs can be affected by DNA immobilization and hybridization. The study of location-selective capping using photoresist provides comprehensive evidence that the sensing of DNA is dominated by the change in metal-SWCNT junctions rather than the channel conductance. © 2007 American Chemical Society.

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