Carbon nanotube N-doping material, carbon nanotube N-doping...

Compositions – Electrically conductive or emissive compositions – Elemental carbon containing

Reexamination Certificate

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C252S500000, C252S502000, C252S510000, C423S447100, C423S447200, C423S447300, C257S040000, C257SE51001, C438S584000, C977S742000, C977S745000, C977S746000, C977S788000, C977S795000

Reexamination Certificate

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07968013

ABSTRACT:
Nicotinamide and/or a compound which is chemically combined with nicotinamide may be used as a carbon nanotube (“CNT”) n-doping material. CNTs n-doped with the CNT n-doping material may have long-lasting doping stability in the air without de-doping. Further, CNT n-doping state may be easily controlled when using the CNT n-doping material. The CNT n-doping material and/or CNTs n-doped with the CNT n-doping material may be used for various applications.

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patent: 2007/0278111 (2007-12-01), Boussaad et al.
patent: 2008/0160384 (2008-07-01), Iqbal et al.
patent: 2010/0044230 (2010-02-01), Papadimitrakopoulos et al.
patent: 10-2006-0073019 (2006-06-01), None
O'Connel et al. “Chiral selectivity in the charge-transfer bleaching of single-walled carbon-nanotube spectra.” Nature, vol. 4, pp. 512-418, May 2005.
Kang et al. “Restorable type conversion of carbn nanotubes transistor using pyrolytically controlled antioxidizing photosynthesis coenzyme.” Adv Funct Mat., vol. 29, pp. 2553-2559, Aug. 2009.
Banks et al. “Exploring the electrocatalytic sites of carbon nanotubes for NADH detection: an edge plane pyrolytic graphite electrode study.” Analyst, vol. 130, pp. 1232-1239, Aug. 2005.
Pumera et al. “A mechanism of adsorption of B-nicotinamide adenine dinucleotide on graphene sheets: experiment and theory.” Chem. Eur., vol. 15, pp. 10851-10856, 2009.
Lawrence et al. Chemical adsorption of phenothiazine dyes onto carbon nanotubes: toward the low potential detection of NADH. Electroc. Comm. vol. 8, pp. 71-76, Nov. 2005.

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