Institute for Innovative Science and Technology, Graduate School of Engineering, Nagasaki Institute of Applied Science, Shuku-machi, Japan.
Phys Rev Lett. 2011 Aug 12;107(7):077001. doi: 10.1103/PhysRevLett.107.077001. Epub 2011 Aug 9.
Superconductivity was recently discovered in solid potassium-intercalated picene (K(3)22ph), in which the picene molecule becomes trianionic (22ph(3-)). In this Letter, we conduct a theory-based study of the superconductivity of 22ph(3-) within the framework of BCS theory. We estimate the density of states N(ε(F)) on the Fermi level to be 2.2 states per (eV molecule spin) by using the theoretical intramolecular electron-phonon coupling l(x) and the experimental superconducting transition temperature T(c) of 18 K. The theoretical value is consistent with the 1.2 states per (eV molecule spin) determined experimentally for K(3)22ph with T(c)=18 K, indicating the validity of our theoretical treatment and the electron-phonon mechanism for superconductivity. The predicted l(x), 0.206 eV, for 22ph(3-) is larger than any value reported for organic superconductors, so picene may have the largest l(x) among the superconductors reported so far.
最近在固体钾插层苝(K(3)22ph)中发现了超导性,其中苝分子变成了三阴离子(22ph(3-))。在这封信中,我们在 BCS 理论的框架内对 22ph(3-)的超导性进行了理论研究。我们通过使用理论分子内电子-声子耦合 l(x)和实验超导转变温度 T(c)为 18 K 来估计费米能级上的态密度 N(ε(F))为 2.2 个状态/(每(eV 分子自旋)。理论值与实验确定的 K(3)22ph 的 1.2 个状态/(每(eV 分子自旋)一致,T(c)=18 K,表明我们的理论处理和电子-声子超导机制的有效性。对于 22ph(3-),预测的 l(x)为 0.206 eV,大于有机超导体报道的任何值,因此苝可能是迄今为止报道的超导体中 l(x)最大的。