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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Rational Sol-Gel-Based Synthesis Design and Magnetic, Dielectric, and Optical Properties Study of Nanocrystalline Sr3Co2WO9 Triple Perovskite
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Rational Sol-Gel-Based Synthesis Design and Magnetic, Dielectric, and Optical Properties Study of Nanocrystalline Sr3Co2WO9 Triple Perovskite

机译:基于溶胶 - 凝胶的合成设计和磁性,电介质和光学性质研究纳米晶Sr3Co2WO9三重钙钛矿

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摘要

Complex perovskites have attracted extensive attention due to their fascinating physical properties and novel features owing to the coexistence of the ferro-/ferri-magnetic ground state and semiconducting behavior in the single material. Herein, the triple perovskite Sr3Co2WO9 (SCWO) has been successfully synthesized for the first time in the nanocrystalline form with an average crystallite size of 23 nm using a high yield (81%) aqueous citrate sol-gel method. At room temperature, the crystal structure of Sr3Co2WO9 is cubic, space group Fm (3) over barm, with lattice parameter a = 7.9073(6) angstrom. The formation of SCWO triple perovskite was studied in situ by X-ray diffraction and subsequently analyzed by the Rietveld analysis. The detected hysteresis loops with nonzero remanent magnetization and rather large coercive field reveal ferrimagnetic ordering with a Curie temperature of 144 K. The measured effective magnetic moment of mu(B) is close to the expected value for the rarely observed intermediate spin S = 1. It is found that the compound exhibits semiconducting properties with the optical band gaps equal to 3.52 eV (indirect) and 3.76 eV (direct), respectively, further confirmed by the determination of the AC conductivity, which in the measured temperature range (25-500 degrees C at 1 kHz) lies within the interval from 10(-5)-10(-4) Omega(-1) cm(-1). The Maxwell-Wagner model is employed to describe the frequency dependent dielectric constant. The frequency-dependent AC conductivity follows the universal Jonscher power law. Since it possesses both magnetic and semiconductor properties, this material could be a promising candidate to use in devices where its semiconducting properties would be spin-controlled.
机译:由于它们在单一材料中的芳香/铁磁场地位和半导体行为的共存,复杂的佩洛夫斯基特因其迷人的物理性质和新颖的特征而引起了广泛的关注。这里,三重钙钛矿SR3CO2WO9(SCWO)在纳米晶体中首次成功地合成,使用高产率(81%)柠檬酸溶胶溶胶 - 凝胶法,平均微晶尺寸为23nm。在室温下,SR3Co2WO9的晶体结构是围立方,空间组FM(3),摇动参数A = 7.9073(6)埃。通过X射线衍射原位研究SCWO三重钙钛矿,随后通过RIETVELD分析分析。具有非零剩磁和相当大的矫顽场检测到的磁滞回线揭示铁磁排序与144 K.所述的居里温度测量亩有效磁矩(B)是接近的很少观察到中间自旋S = 1的预期值。发现该化合物分别表现出半导体性能,光学带间隙分别等于3.52eV(间接)和3.76eV(直接)进一步通过测定的AC电导率来证实,这在测量的温度范围内(25-500 1 kHz的度C为1 kHz)位于10(-5)-10(-4)ω(-1)cm(-1)的间隔内。 Maxwell-Wagner模型用于描述频率相关的介电常数。频率依赖的交流电导率遵循普遍的Jonscher电力法。由于它具有磁性和半导体性能,因此该材料可以是在其半导体性能将自旋控制的装置中使用的有希望的候选者。

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