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Observation of quantum transport at room temperature in a 2.8-nanometer CNT transistor

National Institute for Materials Science, Japan. “Observation of quantum transport at room temperature in a 2.8-nanometer CNT transistor: Semiconductor nanochannels created within metallic CNTS by thermally and mechanically altering the helical structure.” ScienceDaily. ScienceDaily, 3 February 2022. <www.sciencedaily.com/releases/2022/02/220203123008.htm>.

National Institute for Materials Science, Japan. (2022, February 3). Observation of quantum transport at room temperature in a 2.8-nanometer CNT transistor: Semiconductor nanochannels created within metallic CNTS by thermally and mechanically altering the helical structure. ScienceDaily. Retrieved February 4, 2022 from www.sciencedaily.com/releases/2022/02/220203123008.htm

National Institute for Materials Science, Japan. “Observation of quantum transport at room temperature in a 2.8-nanometer CNT transistor: Semiconductor nanochannels created within metallic CNTS by thermally and mechanically altering the helical structure.” ScienceDaily. www.sciencedaily.com/releases/2022/02/220203123008.htm (accessed February 4, 2022).


Source: Computers Math - www.sciencedaily.com

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