Schön J H, Kloc C, Siegrist T, Steigerwald M, Svensson C, Batlogg B
Bell Laboratories, Lucent Technologies, 600 Mountain Avenue, Murray Hill, New Jersey 07974, USA.
Nature. 2001 Oct 25;413(6858):831-3. doi: 10.1038/35101577.
The observation of superconductivity in doped C60 has attracted much attention, as these materials represent an entirely new class of superconductors. A maximum transition temperature (Tc) of 40 K has been reported for electron-doped C60 crystals, while a Tc of 52 K has been seen in hole-doped crystals; only the copper oxide superconductors have higher transition temperatures. The results for C60 raise the intriguing questions of whether conventional electron-phonon coupling alone can produce such high transition temperatures, and whether even higher transition temperatures might be observed in other fullerenes. There have, however, been no confirmed reports of superconductivity in other fullerenes, though it has recently been observed in carbon nanotubes. Here we report the observation of superconductivity in single crystals of electric-field-doped C70. The maximum transition temperature of about 7 K is achieved when the sample is doped to approximately four electrons per C70 molecule, which corresponds to a half-filled conduction band. We anticipate superconductivity in smaller fullerenes at temperatures even higher than in C60 if the right charge density can be induced.
掺杂C60中超导性的发现引起了广泛关注,因为这些材料代表了一类全新的超导体。据报道,电子掺杂C60晶体的最高转变温度(Tc)为40K,而空穴掺杂晶体的Tc为52K;只有铜氧化物超导体具有更高的转变温度。C60的结果引发了一些有趣的问题,即仅靠传统的电子-声子耦合能否产生如此高的转变温度,以及在其他富勒烯中是否可能观察到更高的转变温度。然而,尽管最近在碳纳米管中观察到了超导性,但尚未有关于其他富勒烯超导性的确切报道。在此,我们报告了电场掺杂C70单晶中超导性的观察结果。当样品被掺杂到每个C70分子约四个电子时,即对应于半填充导带时,可实现约7K的最高转变温度。我们预计,如果能诱导出合适的电荷密度,更小的富勒烯在比C60更高的温度下会出现超导性。