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首页> 外文期刊>ACS nano >Block copolymer directed one-pot simple synthesis of L1_0-phase FePt nanoparticles inside ordered mesoporous aluminosilicate/carbon composites
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Block copolymer directed one-pot simple synthesis of L1_0-phase FePt nanoparticles inside ordered mesoporous aluminosilicate/carbon composites

机译:在有序介孔铝硅酸盐/碳复合材料内部,嵌段共聚物定向一锅简单合成L1_0相FePt纳米粒子

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摘要

A "one-pot" synthetic method was developed to produce L1 0-phase FePt nanoparticles in ordered mesostructured aluminosilicate/carbon composites using polyisoprene-block-poly(ethylene oxide) (PI-b-PEO) as a structure-directing agent. PI-b-PEO block copolymers with aluminosilicate sols are self-assembled with a hydrophobic iron precursor (dimethylaminomethyl-ferrocene) and a hydrophobic platinum precursor (dimethyl(1,5-cyclooctadiene)platinum(II)) to obtain mesostructured composites. The as-synthesized material was heat-treated to 800 °C under an Ar/H _2 mixture (5% v/v), resulting in the formation of fct FePt nanocrystals encapsulated in ordered mesopores. By changing the quantities of the Fe and Pt precursors in the composite materials, the average particle size of the resulting fct FePt, estimated using the Debye-Scherer equation with X-ray diffraction patterns, can be easily controlled to be 2.6-10.4 nm. Using this simple synthetic method, we can extend the size of directly synthesized fct FePt up to ~10 nm, which cannot be achieved directly in the colloidal synthetic method. All fct FePt nanoparticles show hysteresis behavior at room temperature, which indicates that ferromagnetic particles are obtained inside mesostructued channels. Well-isolated, ~10 nm fct FePt have a coercivity of 1100 Oe at 300 K. This coercivity value is higher than values of fct FePt nanoparticles synthesized through the tedious hard template method by employing SBA-15 as a host material. The coercivity value for FePt-1 (2.6 nm) at 5 K is as high as 11-900 Oe, which is one of the largest values reported for FePt nanoparticles, or any other magnetic nanoparticles. The fct FePt nanoparticles also showed exchange-bias behavior.
机译:开发了一种“一锅法”合成方法,以聚异戊二烯嵌段-聚环氧乙烷(PI-b-PEO)作为结构导向剂,在有序介孔结构的铝硅酸盐/碳复合材料中生产L1 0相FePt纳米粒子。将具有铝硅酸盐溶胶的PI-b-PEO嵌段共聚物与疏水铁前体(二甲基氨基甲基二茂铁)和疏水铂前体(二甲基(1,5-环辛二烯)铂(II))自组装,以获得介孔结构的复合材料。将合成后的材料在Ar / H _2混合物(5%v / v)下热处理至800°C,导致形成包裹在有序介孔中的fct FePt纳米晶体。通过改变复合材料中Fe和Pt前体的数量,可以很容易地将Decte-Scherer方程和X射线衍射图估算出的fct FePt的平均粒径控制在2.6-10.4 nm。使用这种简单的合成方法,我们可以将直接合成的fct FePt的尺寸扩展到约10 nm,这在胶体合成方法中是无法直接实现的。所有的fct FePt纳米颗粒在室温下都表现出磁滞行为,这表明铁磁颗粒是在介孔结构内获得的。隔离度良好的〜10 nm fct FePt在300 K下的矫顽力为1100 Oe。此矫顽力值高于以SBA-15为主体材料通过乏味的硬模板方法合成的fct FePt纳米颗粒的值。 FePt-1(2.6 nm)在5 K时的矫顽力值高达11-900 Oe,这是FePt纳米颗粒或任何其他磁性纳米颗粒报道的最大值之一。 fct FePt纳米颗粒也表现出交换偏向行为。

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