One Nanometer Thin Carbon Nanosheets with Tunable Conductivity and Stiffness

Turchanin A, Beyer A, Nottbohm CT, Zhang X, Stosch R, Sologubenko A, Mayer J, Hinze P, Weimann T, Gölzhäuser A (2009)
ADVANCED MATERIALS 21(12): 1233-1237.

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Abstract
Atomically thin (similar to 1 nm) carbon films and membranes whose electrical behavior can be tuned from insulating to conducting are fabricated by a novel route. These films present arbitrary size and shape based on molecular self-assembly, electron irradiation, and pyrolysis, and their technical applicability is demonstrated by their incorporation into a microscopic pressure sensor.
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Turchanin A, Beyer A, Nottbohm CT, et al. One Nanometer Thin Carbon Nanosheets with Tunable Conductivity and Stiffness. ADVANCED MATERIALS. 2009;21(12):1233-1237.
Turchanin, A., Beyer, A., Nottbohm, C. T., Zhang, X., Stosch, R., Sologubenko, A., Mayer, J., et al. (2009). One Nanometer Thin Carbon Nanosheets with Tunable Conductivity and Stiffness. ADVANCED MATERIALS, 21(12), 1233-1237.
Turchanin, A., Beyer, A., Nottbohm, C. T., Zhang, X., Stosch, R., Sologubenko, A., Mayer, J., Hinze, P., Weimann, T., and Gölzhäuser, A. (2009). One Nanometer Thin Carbon Nanosheets with Tunable Conductivity and Stiffness. ADVANCED MATERIALS 21, 1233-1237.
Turchanin, A., et al., 2009. One Nanometer Thin Carbon Nanosheets with Tunable Conductivity and Stiffness. ADVANCED MATERIALS, 21(12), p 1233-1237.
A. Turchanin, et al., “One Nanometer Thin Carbon Nanosheets with Tunable Conductivity and Stiffness”, ADVANCED MATERIALS, vol. 21, 2009, pp. 1233-1237.
Turchanin, A., Beyer, A., Nottbohm, C.T., Zhang, X., Stosch, R., Sologubenko, A., Mayer, J., Hinze, P., Weimann, T., Gölzhäuser, A.: One Nanometer Thin Carbon Nanosheets with Tunable Conductivity and Stiffness. ADVANCED MATERIALS. 21, 1233-1237 (2009).
Turchanin, Andrey, Beyer, André, Nottbohm, Christoph T., Zhang, Xinaghui, Stosch, Rainer, Sologubenko, Alla, Mayer, Joachim, Hinze, Peter, Weimann, Thomas, and Gölzhäuser, Armin. “One Nanometer Thin Carbon Nanosheets with Tunable Conductivity and Stiffness”. ADVANCED MATERIALS 21.12 (2009): 1233-1237.
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