Université de Lyon, Laboratoire PMCN, CNRS, UMR 5586, Villeurbanne, France.
J Phys Condens Matter. 2011 Mar 23;23(11):115701. doi: 10.1088/0953-8984/23/11/115701. Epub 2011 Mar 3.
By laser-irradiating polymeric Li(4)C(60) and Na(4)C(60), we have obtained pure monomeric metallic phases stable at ambient conditions. Based on a systemic Raman analysis, we have determined the electron-phonon coupling constant for both metallic phases. The e-p coupling constants of Li- and Na-intercalated metallic fullerides are smaller than those of superconductive K(3)C(60) and Rb(3)C(60) and comparable to or slightly higher than that of ambient-pressure non-superconductive Cs(3)C(60). We predict that Na-doped fulleride could exhibit superconductivity with T(c) ∼ 10 K. Much lower T(c) or even no superconductivity can be expected for the Li-doped fulleride which exhibits a strong Li(+)-C interaction. These results contribute to the understanding of superconductivity in light alkali metal intercalated fullerides.
通过激光辐照聚合的 Li(4)C(60) 和 Na(4)C(60),我们获得了在环境条件下稳定的纯单体金属相。基于系统的拉曼分析,我们确定了两种金属相的电子-声子耦合常数。Li 和 Na 插层金属富勒烯的 e-p 耦合常数小于超导性 K(3)C(60) 和 Rb(3)C(60),与常压非超导性 Cs(3)C(60)相当或略高。我们预测 Na 掺杂富勒烯可能表现出 T(c)∼10 K 的超导性。对于表现出强烈 Li(+)-C 相互作用的 Li 掺杂富勒烯,预期 T(c)会更低甚至没有超导性。这些结果有助于理解轻堿金属插层富勒烯中的超导性。