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A novel radiation-induced grafting methodology to synthesize stable zerovalent iron nanoparticles at ambient atmospheric conditions

机译:一种在环境大气条件下合成稳定的零价铁纳米粒子的新型辐射诱导接枝方法

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摘要

A novel method was developed to synthesize air-stable zerovalent iron nanoparticles (hereafter nZVI) utilizing a radiation grafting technique. The nZVI were synthesized by borohydrate reduction of FeCl3 and stabilized on a radiation grafted copolymer matrix. Polyacrylic acid (PAA) grafted non-woven polyethylene/polypropylene (NWPE/PP-g-PAA) was used as the copolymer matrix and Co-60 gamma-radiation was applied. The nZVI adsorbed NWPE/PP-g-PAA (hereafter nZVI-Ads-NWP) polymer composites were characterized by X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), vibrational spectroscopy, scanning electron microscopy (SEM), Mossbauer spectroscopy, proton titrations, and zeta potential techniques. The SEM images showed that PAA was properly grafted onto the NWPE/PP fabric during irradiation and that the nZVI were well dispersed and stabilized on the fabric surface. Vibrational spectroscopy showed supplementary evidence for the proper grafting of PAA onto the base polymer and suggested a monodentate configuration as the primary interaction between the carboxylate groups of PAA and the nZVI surface. XRD, XPS, and Mossbauer analyses revealed core zerovalent iron with a shell mainly consisting of iron oxides. The pH(ZPC) and pH(IEP) values of nZVI-NaCl suspensions were 7.3. Zeta potential and surface charge data were modeled using the 1-pK Stern layer model with two dissimilar sites for electrolyte and proton binding to account for the observed charge asymmetry.
机译:开发了一种利用辐射接枝技术合成空气稳定的零价铁纳米粒子(以下简称nZVI)的新方法。 nZVI通过硼氢化还原FeCl3合成并稳定在辐射接枝的共聚物基质上。聚丙烯酸酯(PAA)接枝的非织造聚乙烯/聚丙烯(NWPE / PP-g-PAA)被用作共聚物基质,并施加了Co-60γ射线。通过X射线衍射(XRD),X射线光电子能谱(XPS),振动光谱,扫描电子显微镜(SEM)对nZVI吸附的NWPE / PP-g-PAA(以下称为nZVI-Ads-NWP)聚合物复合材料进行了表征Mossbauer光谱,质子滴定和zeta电位技术。 SEM图像表明,在辐照过程中,PAA被正确地接枝到了NWPE / PP织物上,nZVI被很好地分散并稳定在织物表面上。振动光谱显示了将PAA正确接枝到基础聚合物上的补充证据,并提出了单齿构型作为PAA羧酸酯基团与nZVI表面之间的主要相互作用。 XRD,XPS和Mossbauer分析显示核心零价铁具有主要由氧化铁组成的壳。 nZVI-NaCl悬浮液的pH(ZPC)和pH(IEP)值为7.3。使用1-pK Stern层模型对Zeta电位和表面电荷数据进行建模,其中有两个不同的电解质和质子结合位点,以解决观察到的电荷不对称问题。

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