Fujian Key Laboratory of Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Fujian Normal University, Fuzhou 350007, Fujian Province, China.
Fujian Key Laboratory of Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Fujian Normal University, Fuzhou 350007, Fujian Province, China..
Sci Total Environ. 2018 Jun 15;627:470-479. doi: 10.1016/j.scitotenv.2018.01.241. Epub 2018 Feb 3.
The advantages of green synthesized iron nanoparticles by plant extracts include simplicity, high efficiency and sustainability. However, there are limitations in our understanding of the formation of Fe NPs. In this report, the synthesized iron nanoparticles by eucalyptus leaf extract (Fe NPs) showed that Cr(VI) removal efficiency reached approximately 100% at volume ratio of leaf extract and iron(III) solution of 2:1 and pH 4. In addition, the morphology, surface and compositions of Fe NPs were characterized by various techniques. The diameter distribution of 95 ± 5 nm with a capping layer was observed, containing polyphenols and aliphatic acids confirmed by FTIR and XRD. XPS indicated that Fe NPs contained iron oxides, as well as a layer covering on Fe NPs created by biomolecules from eucalyptus leaf extract. Furthermore, the biomolecules identified by GC-MS indicated that alcohol phenols and alkylaldehyde acted as reducing agents, while alcohol acids, alkanols, phytols, acetate and aromatic ketones acted as capping agents. It can be concluded that aldehydes, phenols and alcoholic compounds played dominant roles during the synthesis of Fe NPs. Finally, the mechanism for the formation of Fe NPs was proposed, including both that of Fe NPs and capped Fe NPs.
由植物提取物绿色合成的铁纳米粒子具有简单、高效和可持续等优点。然而,我们对 Fe NPs 的形成机制的理解还存在局限性。在本报告中,由桉树叶提取物合成的铁纳米粒子(Fe NPs)表明,在体积比为 2:1 和 pH 值为 4 的条件下,Cr(VI)的去除效率达到了约 100%。此外,采用多种技术对 Fe NPs 的形貌、表面和组成进行了表征。观察到 95±5nm 的直径分布,含有通过 FTIR 和 XRD 确认的多酚和脂肪酸。XPS 表明 Fe NPs 含有氧化铁,同时,桉树叶提取物中的生物分子在 Fe NPs 上形成了一层覆盖物。此外,通过 GC-MS 鉴定的生物分子表明,醇类酚类和烷基醛类作为还原剂,而醇类酸类、烷醇类、植醇类、醋酸盐类和芳香酮类作为封端剂。可以得出结论,醛类、酚类和醇类化合物在 Fe NPs 的合成过程中起主导作用。最后,提出了 Fe NPs 和封端 Fe NPs 的形成机制。