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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Formation of metastable phases of ferrous sulfide via pulsed Nd: YAG laser deposition: Experimental and theoretical study
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Formation of metastable phases of ferrous sulfide via pulsed Nd: YAG laser deposition: Experimental and theoretical study

机译:通过脉冲Nd形成硫化亚铁的亚硫化物相:YAG激光沉积:实验和理论研究

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Highly polymorphic ferrous sulfide exhibits attractive optical, semiconducting, magnetic and biocatalytic properties related to its phase modification. Nd: YAG laser ablation of ferrous sulfide (FeS) in vaccum results in noncongruent deposition of nanostructured FeS1- x thin films. Deposits have been carried out on Ta, Al and Cu substrates and achieved thin films were analyzed using scanning electron microscopy (SEM), high resolution transmission electron microscopy (HRTEM) and electron diffraction in order to characterize morphology, chemical composition and phase transformation induced by ablative process. Round- shaped and ring-like particles, shapeless agglomerates as well as flat discontinuous areas have been observed for all the coats deposited on various substrates. However, using HRTEM, in agreement with electron diffraction, different phase compositions on various substrates have been detected. Cubic pyrite phase (FeS2) has been detected on Ta substrate. Metastable rhombohedral smythite Fe9S11 and cubic pyrite FeS2 have been found on Al substrate. And cubic pyrite FeS2, metastable rhombohedral smythite Fe9S11 and metastable orthorhombic marcasite FeS(2)m have been revealed on Cu substrate. The detected crystalline nanograins in all deposits were surrounded by amorphous phase. Furthermore, to gain deep insight into the electronic structure of obtained stable (cubic pyrite) and less known unstable phases (orthorhombic marcasite and rhombohedral smythite) the density functional theory is employed and important characteristics such as band gap values have been calculated. (C) 2017 Elsevier B.V. All rights reserved.
机译:高性多态性硫化硫化物表现出与其相变相关的吸引力,半导体,磁性和生物催化性质。 Nd:硫化亚铁(FES)的YAG激光烧蚀在WACCUM中导致纳米结构的FES1-薄膜的非协定沉积。在TA,Al和Cu基板上进行沉积物,使用扫描电子显微镜(SEM),高分辨率透射电子显微镜(HRTEM)和电子衍射进行分析薄膜,以表征由形态,化学成分和相变消融过程。对于沉积在各种基材上的所有涂层,已经观察到圆形和环状颗粒,无形的附聚物以及扁平不连续区域。然而,使用HRTEM与电子衍射一致,检测到各种基材上的不同相组合物。在TA衬底上检测立方硫铁矿相(FES2)。在Al底物上发现了亚料rhombehehehehehedral Smythite Fe9s11和立方黄铁矿Fes2。在Cu基质上揭示了Cu基质,立方黄铁矿FES2,亚稳菱形透明石FE9S11和亚稳态正交马尔卡钠FES(2)M.在所有沉积物中检测到的晶体纳米纳米被非晶相包围。此外,为了深入了解所获得的稳定(立方硫铁矿)和较少已知的不稳定阶段(正交Marcasite和Rhombohedral inythite)的电子结构,采用密度函数理论,并且已经计算了带隙值的重要特性。 (c)2017年Elsevier B.V.保留所有权利。

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