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针铁矿纳米棒:通过小角X射线散射法合成并研究尺寸对其在磁场中取向的影响

Goethite Nanorods: Synthesis and Investigation of the Size Effect on Their Orientation within a Magnetic Field by SAXS.

作者信息

Hinrichs Stephan, Grossmann Larissa, Clasen Eike, Grotian Genannt Klages Hannah, Skroblin Dieter, Gollwitzer Christian, Meyer Andreas, Hankiewicz Birgit

机构信息

Institute of Physical Chemistry, University of Hamburg, Grindelallee 117, 20146 Hamburg, Germany.

Physikalisch-Technische Bundesanstalt (PTB), Abbestraße 2-12, 10587 Berlin, Germany.

出版信息

Nanomaterials (Basel). 2020 Dec 16;10(12):2526. doi: 10.3390/nano10122526.

Abstract

Goethite is a naturally anisotropic, antiferromagnetic iron oxide. Following its atomic structure, crystals grow into a fine needle shape that has interesting properties in a magnetic field. The needles align parallel to weak magnetic fields and perpendicular when subjected to high fields. We synthesized goethite nanorods with lengths between 200 nm and 650 nm in a two-step process. In a first step we synthesized precursor particles made of akaganeite (β-FeOOH) rods from iron(III)chloride. The precursors were then treated in a hydrothermal reactor under alkaline conditions with NaOH and polyvinylpyrrolidone (PVP) to form goethite needles. The aspect ratio was tunable between 8 and 15, based on the conditions during hydrothermal treatment. The orientation of these particles in a magnetic field was investigated by small angle X-ray scattering (SAXS). We observed that the field strength required to trigger a reorientation is dependent on the length and aspect ratio of the particles and could be shifted from 85 mT for the small particles to about 147 mT for the large particles. These particles could provide highly interesting magnetic properties to nanocomposites, that could then be used for sensing applications or membranes.

摘要

针铁矿是一种天然各向异性的反铁磁性氧化铁。按照其原子结构,晶体生长成细针状,在磁场中具有有趣的特性。这些针状晶体在弱磁场中平行排列,在强磁场中垂直排列。我们通过两步法合成了长度在200纳米至650纳米之间的针铁矿纳米棒。第一步,我们用氯化铁合成了由纤铁矿(β-FeOOH)棒制成的前驱体颗粒。然后将前驱体在水热反应器中于碱性条件下用氢氧化钠和聚乙烯吡咯烷酮(PVP)处理,以形成针铁矿针状晶体。根据水热处理过程中的条件,纵横比可在8至15之间调节。通过小角X射线散射(SAXS)研究了这些颗粒在磁场中的取向。我们观察到,触发重新取向所需的场强取决于颗粒的长度和纵横比,并且可以从小颗粒的85毫特斯拉转变为大颗粒的约147毫特斯拉。这些颗粒可为纳米复合材料提供非常有趣的磁性,进而可用于传感应用或膜材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffea/7765628/310c2f4e27a4/nanomaterials-10-02526-g001.jpg

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