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首页> 外文期刊>Materials Science and Engineering. B, Solid-State Materials for Advanced Technology >Fluorescence properties of Fe nanoparticles prepared by electro-explosion of wires
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Fluorescence properties of Fe nanoparticles prepared by electro-explosion of wires

机译:导线电爆制备的铁纳米颗粒的荧光性质

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A novel electro-exploding wire technique has been employed to synthesize pure Fe nanoparticles. The Fe nanoparticles exist in a body-centered cubic (bcc) phase with an average size of the particles in the range ~17 nm. A weak feature at ~352 nm in the UV-vis absorption spectra has been established to be remnants of a surface plasmon peak, broadened due to the reduced particle size. Further, a fluorescence emission peak is observed at ~303 nm for excitation wavelength in two different ranges, 220-250 nm and 255-280 nm. The position of the fluorescence peak remains fixed, irrespective of the excitation's wavelength employed. The fluorescence is assigned to electronic transitions from excited states to d levels of the Fe nanoparticles. In concomitant with these, two resonant absorptions are observed at 224 nm and 270 nm, evident from the fluorescence excitation spectra which allow us to give a description of the electronic levels operating in this system.
机译:一种新颖的电爆炸丝技术已被用来合成纯铁纳米颗粒。 Fe纳米粒子以体心立方(bcc)相存在,平均粒径在〜17 nm范围内。紫外可见吸收光谱中约352 nm处的弱点已被确定为表面等离激元峰的残留物,由于粒径减小而变宽。此外,在两个不同范围(220-250 nm和255-280 nm)内的激发波长,在〜303 nm处观察到荧光发射峰。荧光峰的位置保持固定,而与所采用的激发波长无关。荧光被分配给铁纳米粒子从激发态到d级的电子跃迁。与此相伴的是,在224nm和270nm处观察到两个共振吸收,这从荧光激发光谱可以明显看出,这使我们能够描述在该系统中操作的电子能级。

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