超导电性
反铁磁性
材料科学
化学计量学
相变
纳米片
纳米技术
相(物质)
转变温度
扩散
凝聚态物理
化学
物理化学
物理
有机化学
热力学
作者
Da Li,Desheng Pan,Weilai Liu,Xiaoxi Li,Maolin Chen,Shaojie Li,Yong Li,Jun Tan,Dongming Sun,Zhenhua Wang,Zheng Han,Zhidong Zhang
标识
DOI:10.1021/acs.chemmater.6b04887
摘要
Low-temperature synthesis of β-FeSe superconductor from soluble precursors is a great challenge in the chemical solution approaches. Here, we develop a new and facile solution-based synthetic route to first fabricate narrow-phased β-FeSe superconductor with soluble iron and selenium sources as starting materials. The growth mechanism of β-FeSe superconductors is discussed by kinetically controllable syntheses in various reaction conditions. Chemically engineering the stoichiometry of β-FeSe products by selenium-diffusion process gives rise to a transition of antiferromagnetic-superconducting-antiferromagnetic (AFM-SC-AFM) order. Once the AFM order is suppressed, SC β-FeSe nanosheets show a tunable initial superconducting transition temperature (TC) from 3.2 to 10 K in the superconducting regime. Electrical measurements on superconducting β-FeSe exhibit an upper critical magnetic field higher than 14 T, showing potential application of β-FeSe nanosheet for superconducting device. This method provides guidance for future applications in such chemical solutions for diffusion-controlled synthesis of narrow-phased functional materials, which are enriched of abundant fundamental physics and potentials for future applications.
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