化学
超导电性
兴奋剂
单层
金属
凝聚态物理
费米能级
石墨烯
化学物理
结晶学
电子
纳米技术
材料科学
物理
生物化学
有机化学
量子力学
作者
Chen Xu,Jun Deng,Shifeng Jin,Tianping Ying,Fei Ge,Huifen Ren,Yunfan Yang,Ke Ma,Mingzhang Yang,Jun‐Jie Wang,Yanchun Li,Xin Chen,Xiaobing Liu,Shixuan Du,Jiangang Guo,Xiaolong Chen
摘要
All two-dimensional (2D) materials of group IV elements from Si to Pb are stabilized by carrier doping and interface bonding from substrates except graphene which can be free-standing. The involvement of strong hybrid of bonds, adsorption of exotic atomic species, and the high concentration of crystalline defects are often unavoidable, complicating the measurement of the intrinsic properties. In this work, we report the discovery of seven kinds of hitherto unreported bulk compounds (RO)nPb (R = rare earth metals, n = 1,2), which consist of quasi-2D Pb square nets that are spatially and electronically detached from the [RO]δ+ blocking layers. The band structures of these compounds near Fermi levels are relatively clean and dominantly contributed by Pb, resembling the electron-doped free-standing Pb monolayer. The R2O2Pb compounds are metallic at ambient pressure and become superconductors under high pressures with much enhanced critical fields. In particular, Gd2O2Pb (9.1 μB/Gd) exhibits an interesting bulk response of lattice distortion in conjunction with the emergence of superconductivity and magnetic anomalies at a critical pressure of 10 GPa. Our findings reveal the unexpected facets of 2D Pb sheets that are considerably different from their bulk counterparts and provide an alternative route for exploring 2D properties in bulk materials.
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