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Adsorbent 2D and 3D carbon matrices with protected magnetic iron nanoparticles

机译:碳吸附剂2 d和3 d矩阵与保护磁性铁纳米颗粒

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摘要

We report on the synthesis of two and three dimensional carbonaceous sponges produced directly from graphene oxide (GO) into which functionalized iron nanoparticles can be introduced to render it magnetic. This simple, low cost procedure, wherein an iron polymeric resin precursor is introduced into the carbon framework, results in carbon-based materials with specific surface areas of the order of 93 and 66 m(2) g(-1), compared to approx. 4 m(2) g(-1) for graphite, decorated with ferromagnetic iron nanoparticles giving coercivity fields postulated to be 216 and 98 Oe, values typical for ferrite magnets, for 3.2 and 13.5 wt% Fe respectively. The strongly magnetic iron nanoparticles are robustly anchored to the GO sheets by a layer of residual graphite, on the order of 5 nm, formed during the pyrolysis of the precursor material. The applicability of the carbon sponges is demonstrated in their ability to absorb, store and subsequently elute an organic dye, Rhodamine B, from water as required. It is possible to regenerate the carbon-iron hybrid material after adsorption by eluting the dye with a solvent to which it has a high affinity, such as ethanol. The use of a carbon framework opens the hybrid materials to further chemical functionalization, for enhanced chemical uptake of contaminants, or co-decoration with, for example, silver nanoparticles for bactericidal properties. Such analytical properties, combined with the material's magnetic character, offer solutions for environmental decontamination at land and sea, wastewater purification, solvent extraction, and for the concentration of dilute species.
机译:我们报告2和3的合成维碳质海绵生产直接从石墨烯氧化物(去)铁纳米粒子功能化介绍了磁呈现它。低成本的过程中,在一个铁聚合物树脂前体引入碳框架,导致碳基材料特定的表面区域的93年和66年m g(1),(2)相比,大约。石墨,装饰着铁磁铁假定纳米粒子给矫顽力字段216年和98年Oe,铁氧体的典型值磁铁,分别为3.2和13.5 wt %菲。强磁性铁纳米颗粒坚定地固定在床单的一层剩余石墨,5 nm,形成在热解的前体物质。碳海绵的适用性演示的能力吸收、存储然后洗提一个有机染料,若丹明B,从水的要求。重新生成碳生铁混合材料与溶剂洗脱吸附的染料它具有高度的亲和力,比如乙醇。打开混合碳框架的使用材料进一步化学功能化,增强化学吸收污染物,或co-decoration,例如,银纳米粒子对杀菌的特性。分析属性,结合材料的磁特性,提供解决方案土地和环境净化海,废水净化、溶剂萃取,和稀物种的浓度。

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