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Iron [email?protected] Nanocomposites: A Tool Box of Functional Materials

机译:铁[受电子邮件保护的]纳米复合材料:功能材料的工具箱

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Iron carbide (Fe 3 C) is a ceramic magnetic material with high potential for applications in different fields, including catalysis, medicine imaging, coatings, and sensors. Despite its interesting properties, it is still somehow largely unexplored, probably due to challenging synthetic conditions. In this contribution, we present a sol-gel-based method that allows preparing different Fe 3 [email?protected] nanocomposites with tailored properties for specific applications, in particular, we have focused on and discussed potential uses for adsorption of noxious gas and waste removal. Nanocomposites were prepared using readily available and “green” sources, such as urea, simple and complex sugars, and chitosan. The nanocomposite prepared from chitosan was found to be more efficient for CO 2 uptake, while the sample synthetized from cellulose had optimal capability for dye absorption and waste oil removal from water.
机译:碳化铁(Fe 3 C)是一种陶瓷磁性材料,具有很高的潜力,可用于不同领域,包括催化,医学成像,涂层和传感器。尽管它具有令人感兴趣的特性,但由于合成条件的挑战,它在某种程度上仍未得到开发。在这项贡献中,我们提出了一种基于溶胶-凝胶的方法,该方法允许制备具有特定用途的特定性能的不同Fe 3 [受电子邮件保护的]纳米复合材料,特别是,我们重点研究了有毒气体和废物吸附的潜在用途。去除。纳米复合材料是使用容易获得的“绿色”来源制备的,例如尿素,简单和复杂的糖以及壳聚糖。发现由壳聚糖制备的纳米复合材料对于吸收CO 2更有效,而由纤维素合成的样品具有最佳的染料吸收能力和从水中去除废油的能力。

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