Metal-intercalated aromatic hydrocarbons: a new class of carbon-based superconductors |
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Authors: | Kubozono Yoshihiro Mitamura Hiroki Lee Xuesong He Xuexia Yamanari Yusuke Takahashi Yosuke Suzuki Yuta Kaji Yumiko Eguchi Ritsuko Akaike Koki Kambe Takashi Okamoto Hideki Fujiwara Akihiko Kato Takashi Kosugi Taichi Aoki Hideo |
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Affiliation: | Research Laboratory for Surface Science, Okayama University, Okayama, Japan. kubozono@cc.okayama-u.ac.jp |
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Abstract: | ![]() New carbon-based superconductors are synthesized by intercalating metal atoms into the solid-phase hydrocarbons picene and coronene. The highest reported superconducting transition temperature, T(c), of a hydrocarbon superconductor is 18 K for K(3)picene. The physics and chemistry of the hydrocarbon superconductors are extensively described for A(x)picene (A: alkali and alkali earth-metal atoms) for x = 0-5. The theoretical picture of their electronic structure is also reviewed. Future prospects for hydrocarbon superconductors are discussed from the viewpoint of combining electronics with condensed-matter physics: modification of the physical properties of hydrocarbon solids is explored by building them into a field-effect transistor. The features of other carbon-based superconductors are compared to clarify the nature of hydrocarbon superconductors. |
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