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通过离子交换法一步合成新型可持续、可扩展的氧化铁纳米颗粒

New Sustainable, Scalable and One-Step Synthesis of Iron Oxide Nanoparticles by Ion Exchange Process.

作者信息

Macera Ludovico, Daniele Valeria, Mondelli Claudia, Capron Marie, Taglieri Giuliana

机构信息

Department of Industrial and Information Engineering and Economics, University of L'Aquila, Piazzale E. Pontieri 1, Monteluco di Roio, I-67100 L'Aquila, Italy.

CNR-IOM-OGG, Institut Laue Langevin, 71 Avenue des Martyrs, CEDEX 9, 38042 Grenoble, France.

出版信息

Nanomaterials (Basel). 2021 Mar 20;11(3):798. doi: 10.3390/nano11030798.

Abstract

This work introduces an innovative, sustainable, and scalable synthesis of iron oxides nanoparticles (NPs) in aqueous suspension. The method, based on ion exchange process, consists of a one-step procedure, time and energy saving, operating in water and at room temperature, by cheap and renewable reagents. The influence of both oxidation state of the initial reagent and reaction atmosphere is considered. Three kinds of iron nanostructured compounds are obtained (2-lines ferrihydrite; layered-structure iron oxyhydroxide δ-FeOOH; and cubic magnetite), in turn used as precursors to obtain hematite and maghemite NPs. All the produced NPs are characterized by a high purity, small particles dimensions (from 2 to 50 nm), and high specific surface area values up to 420 m/g, with yields of production >90%. In particular, among the most common iron oxide NPs, we obtained cubic magnetite NPs at room temperature, characterized by particle dimensions of about 6 nm and a surface area of 170 m/g. We also obtained hematite NPs at very low temperature conditions (that is 2 h at 200 °C), characterized by particles dimensions of about 5 nm with a surface area value of 200 m/g. The obtained results underline the strength of the synthetic method to provide a new, sustainable, tunable, and scalable high-quality production.

摘要

这项工作介绍了一种在水悬浮液中创新、可持续且可扩展的氧化铁纳米颗粒(NPs)合成方法。该方法基于离子交换过程,由一步法组成,省时节能,在水中且于室温下操作,使用廉价且可再生的试剂。考虑了初始试剂的氧化态和反应气氛的影响。获得了三种铁纳米结构化合物(二线水铁矿;层状结构羟基氧化铁δ-FeOOH;以及立方磁铁矿),依次用作前驱体来获得赤铁矿和磁赤铁矿纳米颗粒。所有制备的纳米颗粒具有高纯度、小颗粒尺寸(2至50纳米)以及高达420平方米/克的高比表面积值,产率>90%。特别是,在最常见的氧化铁纳米颗粒中,我们在室温下获得了立方磁铁矿纳米颗粒,其颗粒尺寸约为6纳米,表面积为170平方米/克。我们还在非常低的温度条件下(即在200℃下2小时)获得了赤铁矿纳米颗粒,其颗粒尺寸约为5纳米,表面积值为200平方米/克。所得结果突显了该合成方法在提供一种新的、可持续的、可调控且可扩展的高质量生产方面的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4480/8004010/45b2e247f38a/nanomaterials-11-00798-g001.jpg

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