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Items: 9

1.

Metal contact engineering and registration-free fabrication of complementary metal-oxide semiconductor integrated circuits using aligned carbon nanotubes.

Wang C, Ryu K, Badmaev A, Zhang J, Zhou C.

ACS Nano. 2011 Feb 22;5(2):1147-53. doi: 10.1021/nn1027856. Epub 2011 Jan 27.

PMID:
21271709
2.

Strategy for carrier control in carbon nanotube transistors.

Yu WJ, Lee YH.

ChemSusChem. 2011 Jul 18;4(7):890-904. doi: 10.1002/cssc.201000412. Epub 2011 May 6. Review.

PMID:
21557492
3.

Imaging of the Schottky barriers and charge depletion in carbon nanotube transistors.

Freitag M, Tsang JC, Bol A, Yuan D, Liu J, Avouris P.

Nano Lett. 2007 Jul;7(7):2037-42. Epub 2007 Jun 9. Review.

PMID:
17559288
4.

Issues of nanoelectronics: a possible roadmap.

Wang KL.

J Nanosci Nanotechnol. 2002 Jun-Aug;2(3-4):235-66. Review.

PMID:
12908252
5.

Commercialisation of CMOS integrated circuit technology in multi-electrode arrays for neuroscience and cell-based biosensors.

Graham AH, Robbins J, Bowen CR, Taylor J.

Sensors (Basel). 2011;11(5):4943-71. doi: 10.3390/s110504943. Epub 2011 May 4. Review.

6.

Oxide semiconductor thin-film transistors: a review of recent advances.

Fortunato E, Barquinha P, Martins R.

Adv Mater. 2012 Jun 12;24(22):2945-86. doi: 10.1002/adma.201103228. Epub 2012 May 10. Review.

PMID:
22573414
7.

Neuromorphic hardware databases for exploring structure-function relationships in the brain.

Breslin C, O'Lenskie A.

Philos Trans R Soc Lond B Biol Sci. 2001 Aug 29;356(1412):1249-58. Review.

8.

Atomic switches: atomic-movement-controlled nanodevices for new types of computing.

Hino T, Hasegawa T, Terabe K, Tsuruoka T, Nayak A, Ohno T, Aono M.

Sci Technol Adv Mater. 2011 Jan 12;12(1):013003. eCollection 2011 Jan 12. Review.

9.

CMOS biosensors for in vitro diagnosis - transducing mechanisms and applications.

Lei KM, Mak PI, Law MK, Martins RP.

Lab Chip. 2016 Sep 21;16(19):3664-3681. Review.

PMID:
27713991

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