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One-pot low temperature solution synthesis, magnetic and microwave electromagnetic properties of single-crystal iron submicron cubes

机译:一锅式低温溶液合成,单晶铁亚微米立方体的磁和微波电磁性能

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摘要

Large quantities of single-crystal iron submicron cubes with controllable dimensions and surface structures were synthesized by a facile low-temperature solution reduction approach under normal atmosphere. The influence of kinetic parameters such as NaOH concentration, reaction temperature, reaction time, species of solvents and reducing agents, etc. on the morphology, size and crystal structure of the as-synthesized products were investigated in detail. The resultant products experience multistep phase transformations and morphology evolutions from Fe(OH)2 nanosheets, to weak crystalline Fe3O4 ultrafine particles and to high crystalline Fe cubes. It is believed that both the control over the quasi-equilibrium crystal nucleation and growth rate by adjusting kinetic parameters, and the selective interaction between ethylenediamine and various crystallographic planes of bcc iron play crucial roles in the formation of the slightly truncated cubes with {100} planes at the sides and small {111} planes on the corners. The as-synthesized iron cubes exhibit a strong and wide resonance behavior for the imaginary permittivity and imaginary permeability over the frequency range of 2-14 GHz as a result of the submicron size and anisotropy morphology. The paraffin-based composites containing 26 vol% iron submicron cubes show good electromagnetic wave absorbing characteristics and the reflection loss values less than -20 dB are obtained in the frequency range of 6.5-18.0 GHz when the thickness of the composites is 1.0-2.5 mm, suggesting that the iron submicron cubes synthesized here are promising as a strong-absorption, thin-thickness, light-weight and low-cost microwave absorber.
机译:在常压气氛下,采用简便的低温溶液还原法,合成了尺寸和表面结构可控的大量单晶亚铁立方体。详细研究了NaOH浓度,反应温度,反应时间,溶剂和还原剂种类等动力学参数对合成产物的形貌,尺寸和晶体结构的影响。从Fe(OH)2纳米片到弱结晶的Fe3O4超细颗粒和高结晶的Fe立方,所得的产品经历了多步相变和形态演变。可以认为,通过调节动力学参数控制准平衡晶体成核和生长速率,以及乙二胺与bcc铁的各种晶面之间的选择性相互作用,在{100}的略微截短的立方体的形成中都起着至关重要的作用。侧面的飞机和角落上的小型{111}飞机。合成后的铁块由于亚微米尺寸和各向异性形态,在2-14 GHz的频率范围内对虚介电常数和虚磁导率表现出强而宽的共振行为。当复合材料的厚度为1.0-2.5 mm时,在6.5-18.0 GHz的频率范围内,包含26%(体积)铁亚微米立方体的石蜡基复合材料表现出良好的电磁波吸收特性,并且反射损耗值小于-20 dB。 ,表明这里合成的亚铁立方块有望成为一种强吸收,薄,轻便,低成本的微波吸收剂。

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