Superconductivity with exotic properties has often been discovered in materials with a layered (two-dimensional) crystal structure. The low dimensionality affects the electronic structure of materials, which could realize a high transition temperature (Tc) and/or unconventional pairing mechanisms. Here, we report the superconductivity in a layered tin arsenide NaSn2As2. The crystal structure consists of (Sn2As2)2- bilayers, which is bound by van-der-Waals forces, separated by Na+ ions. Measurements of electrical resistivity and specific heat confirm the bulk nature of superconductivity of NaSn2As2 with Tc of 1.3 K. Our results propose that the SnAs layers will be a basic structure providing another universality class of a layered superconducting family, and it provides a new platform for the physics and chemistry of low-dimensional superconductors with lone pair electrons.
翻译:具有异国特性的超导性经常在具有层(二维)晶体结构的材料中被发现,低维性影响材料的电子结构,这种结构可以实现高过渡温度(Tc)和/或非常规配对机制。在这里,我们报告一个层(Sn2Asnide NaSn2As2As2)的超导性。这个晶体结构由(Sn2As2)2-2双层组成,它们受由 Na+离子分离的范德尔-瓦尔斯力量的束缚。电阻性和特定热度的测量证实NaSn2As2和1.3KTc的超导性大宗性质。我们的结果建议,SnAs层将是一个基本结构,提供另一层超导型大家庭的普遍性类别,它为使用单对电子的低维超导体的物理和化学提供了一个新的平台。