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Synthesis of silver/montmorillonite nanocomposites using γ-irradiation

机译:γ辐照合成银/蒙脱土纳米复合材料

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摘要

Silver nanoparticles (Ag-NPs) were synthesized into the interlamellar space of montmorillonite (MMT) by using the γ-irradiation technique in the absence of any reducing agent or heat treatment. Silver nitrate and γ-irradiation were used as the silver precursor and physical reducing agent in MMT as a solid support. The MMT was suspended in the aqueous AgNO3 solution, and after the absorption of silver ions, Ag+ was reduced using the γ-irradiation technique. The properties of Ag/MMT nanocomposites and the diameters of Ag-NPs were studied as a function of γ-irradiation doses. The interlamellar space limited particle growth (d-spacing [ds] = 1.24–1.42 nm); powder X-ray diffraction and transmission electron microscopy (TEM) measurements showed the production of face-centered cubic Ag-NPs with a mean diameter of about 21.57–30.63 nm. Scanning electron microscopy images indicated that there were structure changes between the initial MMT and Ag/MMT nanocomposites under the increased doses of γ-irradiation. Furthermore, energy dispersive X-ray fluorescence spectra for the MMT and Ag/ MMT nanocomposites confirmed the presence of elemental compounds in MMT and Ag-NPs. The results from ultraviolet-visible spectroscopy and TEM demonstrated that increasing the γ-irradiation dose enhanced the concentration of Ag-NPs. In addition, the particle size of the Ag-NPs gradually increased from 1 to 20 kGy. When the γ-irradiation dose increased from 20 to 40 kGy, the particle diameters decreased suddenly as a result of the induced fragmentation of Ag-NPs. Thus, Fourier transform infrared spectroscopy suggested that the interactions between Ag-NPs with the surface of MMT were weak due to the presence of van der Waals interactions. The synthesized Ag/MMT suspension was found to be stable over a long period of time (ie, more than 3 months) without any sign of precipitation.
机译:在没有任何还原剂或热处理的情况下,使用γ射线辐照技术将银纳米颗粒(Ag-NPs)合成到蒙脱石(MMT)的层间空间中。硝酸银和γ射线被用作MMT中的银前体和物理还原剂作为固体载体。 MMT悬浮在AgNO3水溶液中,吸收银离子后,使用γ辐照技术还原Ag + 。研究了Ag / MMT纳米复合材料的性质和Ag-NPs的直径与γ辐照剂量的关系。层间空间限制了粒子的生长(d间距[ds] = 1.24–1.42 nm);粉末X射线衍射和透射电子显微镜(TEM)测量表明,平均直径约为21.57-30.63 nm的面心立方Ag-NP的产生。扫描电子显微镜图像表明,在增加的γ辐射剂量下,初始MMT和Ag / MMT纳米复合材料之间存在结构变化。此外,MMT和Ag / MMT纳米复合材料的能量色散X射线荧光光谱证实了MMT和Ag-NP中存在元素化合物。紫外-可见光谱和TEM的结果表明,增加γ辐照剂量可提高Ag-NPs的浓度。另外,Ag-NP的粒径从1kGy逐渐增加到20kGy。当γ辐照剂量从20 kGy增加到40 kGy时,由于诱导的Ag-NP碎裂,粒径突然减小。因此,傅立叶变换红外光谱表明,由于存在范德华相互作用,Ag-NP与MMT表面的相互作用较弱。发现合成的Ag / MMT悬浮液在长时间(即,超过3个月)内是稳定的,没有任何沉淀的迹象。

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