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Post-treatment Method for the Synthesis of Monodisperse Binary FePt-Fe 3O 4 Nanoparticles

机译:后分散法制备单分散二元FePt-Fe 3 O 4 纳米粒子

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摘要

To obtain the optimal 1:1 composition of FePt alloy nanomaterials by polyol synthesis, the iron precursor (iron pentacarbonyl, Fe(CO)~(5)) must be used in excess, because the Fe(CO)~(5)exists in the vapor phase at the typical temperatures used for FePt synthesis and cannot be consumed completely. Fabrication of Fe~(3)O~(4)nanoparticles by consuming the excess iron precursor was an effective strategy to make full use of the iron precursor. In this paper, a facile post-treatment method was applied to consume the excess iron, which was oxidized to Fe~(3)O~(4)after post-treatment at 150 and 200?°C, and a monodisperse binary FePt-Fe~(3)O~(4)nanoparticle system was generated. The post-treatment method did not affect the crystal structure, grain size, or composition of the FePt nanoparticles. However, the content and grain size of the fcc-Fe~(3)O~(4)nanoparticles can be increased simply by increasing the post-treatment temperature from 150 to 200?°C.
机译:为了通过多元醇合成获得最佳的1:1 FePt合金纳米材料组成,必须过量使用铁前体(五羰基铁,Fe(CO)〜(5)),因为Fe(CO)〜(5)存在于FePt合成所用的典型温度下的气相,不能完全消耗掉。通过消耗过量的铁前驱体来制备Fe〜(3)O〜(4)纳米粒子是有效利用铁前驱体的有效策略。本文采用一种简便的后处理方法来消耗过量的铁,该铁在150和200°C下进行后处理后被氧化成Fe〜(3)O〜(4),并形成单分散的二元FePt-生成了Fe〜(3)O〜(4)纳米粒子体系。后处理方法不影响FePt纳米颗粒的晶体结构,晶粒尺寸或组成。但是,仅通过将后处理温度从150℃提高到200℃就可以增加fcc-Fe〜(3)O〜(4)纳米颗粒的含量和晶粒尺寸。

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