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Nanotube Molecular Wires as Chemical Sensors

Jing Kong; Nathan R. Franklin; Chongwu Zhou; Michael G. Chapline; Shu Peng; Kyeongjae Cho; Hongjie Dai · Science · 2000

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Chemical sensors based on individual single-walled carbon nanotubes (SWNTs) are demonstrated. Upon exposure to gaseous molecules such as NO(2) or NH(3), the electrical resistance of a semiconducting SWNT is found to dramatically increase or decrease. This serves as the basis for nanotube molecular sensors. The nanotube sensors exhibit a fast response and a substantially higher sensitivity than that of existing solid-state sensors at room temperature. Sensor reversibility is achieved by slow recovery under ambient conditions or by heating to high temperatures. The interactions between molecular species and SWNTs and the mechanisms of molecular sensing with nanotube molecular wires are investigated.

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APA 7

Kong, J, Franklin, N. R, Zhou, C, Chapline, M. G, Peng, S, Cho, K, & Dai, H. (2000). Nanotube Molecular Wires as Chemical Sensors. https://doi.org/10.1126/science.287.5453.622

MLA

Kong, Jing, et al. "Nanotube Molecular Wires as Chemical Sensors." 2000. https://doi.org/10.1126/science.287.5453.622.

Chicago

Kong, Jing, Nathan R. Franklin, Chongwu Zhou, Michael G. Chapline, Shu Peng, Kyeongjae Cho, and Hongjie Dai. 2000. "Nanotube Molecular Wires as Chemical Sensors.". https://doi.org/10.1126/science.287.5453.622.

Harvard

Kong, J. et al. 2000, Nanotube Molecular Wires as Chemical Sensors, Science, available at: https://doi.org/10.1126/science.287.5453.622 [Accessed 8 Aug. 2026].

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Title
Nanotube Molecular Wires as Chemical Sensors
Author / contributors
Jing Kong; Nathan R. Franklin; Chongwu Zhou; Michael G. Chapline; Shu Peng; Kyeongjae Cho; Hongjie Dai
Publisher
Science
Publication year
2000
Language
English

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