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Influence of Dose on Particle Size and Optical Properties of Colloidal Platinum Nanoparticles

机译:剂量对胶体铂纳米颗粒粒径和光学性能的影响

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摘要

Attempts to produce colloidal platinum nanoparticles by using steady absorption spectra with various chemical-based reduction methods often resulted in the fast disappearance of the absorption maxima leaving reduced platinum nanoparticles with little information on their optical properties. We synthesized colloidal platinum nanoparticles in an aqueous solution of polyvinyl pyrrolidone by gamma radiolytic reduction method, which produced steady absorption spectra of fully reduced and highly pure platinum nanoparticles free from by-product impurities or reducing agent contamination. The average particle size was found to be in the range of 3.4–5.3 nm and decreased with increasing dose due to the domination of nucleation over ion association in the formation of metal nanoparticles by the gamma radiolytic reduction method. The platinum nanoparticles exhibit optical absorption spectra with two absorption peaks centered at about 216 and 264 nm and the peaks blue shifted to lower wavelengths with decreasing particle size. The absorption spectra of platinum nanoparticles were also calculated using quantum mechanical treatment and coincidently a good agreement was obtained between the calculated and measured absorption peaks at various particle sizes. This indicates that the 216 and 264-nm absorption peaks of platinum nanoparticles conceivably originated from the intra-band transitions of conduction electrons of (n = 5, l = 2) and (n = 6, l = 0) energy states respectively to higher energy states. The absorption energies, i.e., conduction band energies of platinum nanoparticles derived from the absorption peaks increased with increasing dose and decreased with increasing particle size.
机译:尝试通过使用稳定的吸收光谱和各种基于化学的还原方法来制备胶体铂纳米粒子,通常会导致吸收最大值快速消失,从而使还原的铂纳米粒子的光学性能信息很少。我们通过γ射线辐射还原法在聚乙烯吡咯烷酮水溶液中合成了胶体铂纳米粒子,该粒子产生了完全还原的高纯度铂纳米粒子的稳定吸收光谱,而没有副产物杂质或还原剂污染。发现平均粒径在3.4–5.3 nm范围内,并且随着剂量的增加而减小,这是由于通过伽马射线分解法在金属纳米颗粒的形成中对离子缔合的成核作用占主导地位。铂纳米颗粒表现出具有两个吸收峰的光学吸收光谱,两个吸收峰集中在约216和264 nm处,并且随着粒径的减小,该峰蓝移至较低的波长。还使用量子机械处理计算了铂纳米粒子的吸收光谱,同时在各种粒径的计算和测量的吸收峰之间也获得了良好的一致性。这表明,铂纳米颗粒的216和264 nm吸收峰可以想象地分别来自于(n = 5,l = 2)和(n = 6,l = 0)能量状态的导电电子的带内跃迁。能量状态。源自吸收峰的铂纳米颗粒的吸收能,即导带能,随着剂量的增加而增加,而随着粒径的增加而减小。

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