Takada Kazunori, Sakurai Hiroya, Takayama-Muromachi Eiji, Izumi Fujio, Dilanian Ruben A, Sasaki Takayoshi
Advanced Materials Laboratory, National Institute for Materials Science, Tsukuba, Ibaraki 305-0044, Japan.
Nature. 2003 Mar 6;422(6927):53-5. doi: 10.1038/nature01450.
Since the discovery of high-transition-temperature (high-T(c)) superconductivity in layered copper oxides, many researchers have searched for similar behaviour in other layered metal oxides involving 3d-transition metals, such as cobalt and nickel. Such attempts have so far failed, with the result that the copper oxide layer is thought to be essential for superconductivity. Here we report that Na(x)CoO2*yH2O (x approximately 0.35, y approximately 1.3) is a superconductor with a T(c) of about 5 K. This compound consists of two-dimensional CoO2 layers separated by a thick insulating layer of Na+ ions and H2O molecules. There is a marked resemblance in superconducting properties between the present material and high-T(c) copper oxides, suggesting that the two systems have similar underlying physics.
自从在层状铜氧化物中发现高转变温度(高Tc)超导性以来,许多研究人员一直在其他涉及3d过渡金属(如钴和镍)的层状金属氧化物中寻找类似行为。到目前为止,这些尝试都失败了,结果是氧化铜层被认为是超导性所必需的。在此我们报告,Na(x)CoO2*yH2O(x约为0.35,y约为1.3)是一种Tc约为5K的超导体。该化合物由被厚的Na+离子和H2O分子绝缘层隔开的二维CoO2层组成。当前材料与高Tc铜氧化物在超导性质上有显著相似之处,这表明这两个体系具有相似的基础物理原理。