Ambipolar Conduction of λ-DNA Transistor Fabricated on SiO<sub>2</sub>/Si Structure
Author:
Affiliation:
1. Graduate School of Engineering, University of Hyogo
2. Department of Materials and Synchrotron Engineering, University of Hyogo
3. Department of Applied Chemistry, University of Hyogo
4. Research Institute for Nanodevices, Hiroshima University
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Link
https://www.jstage.jst.go.jp/article/transele/E105.C/8/E105.C_2021ECP5049/_pdf
Reference29 articles.
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2. [2] H. Tabata and T. Kawai, “DNA nanotechnology — toward the realization of DNA molecular devices,” Oyo Buturi, vol.71, 1007, 2002.
3. [3] H.-W. Fink and C. Schönenberger, “Electrical conduction through DNA molecules,” Nature, vol.398, no.6726, pp.407-410, 1999. 10.1038/18855
4. [4] A.Y. Kasumov, M. Kociak, S. Guéron, B. Reulet, V.T. Volkov, D.V. Klinov, and H. Bouchiat, “Proximity-induced superconductivity in DNA,” Science, vol.291, no.5502, pp.280-282, 2001. 10.1126/science.291.5502.280
5. [5] H.-Y. Lee, H. Tanaka, and Y. Otsuka, “Control of electrical conduction in DNA using oxygen hole doping,” Appl. Phys. Lett., vol.80, no.9, pp.1670-1672, 2002. 10.1063/1.1456972
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