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Synthesis and characterization of potential iron–platinum drugs and supplements by laser liquid photolysis

机译:激光液相光解法合成和表征潜在的铁铂药物及其补充剂

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摘要

Highly crystalline nanospherical iron–platinum systems were produced by 248 nm laser irradiation of a liquid precursor at different laser fluences, ranging from 100–375 mJ/cm2. The influence of laser intensity on particle size, iron composition, and structure was systematically investigated. Different nanostructures of iron–platinum alloy and chemically disordered iron–platinum L10 phase were obtained without annealing. The prepared precursor solution underwent deep photolysis to polycrystalline iron–platinum nanoalloys through Fe(III) acetylacetonate and Pt(II) acetylacetonate. Fe(II) and Pt(I) acetylacetone decomposed into Fe0 and Pt0 nanoparticles. We found that the (001) diffraction peak shifted linearly to a lower angle, with the last peak shifting in opposition to the others. This caused the face-centered cubic L10 structure to change its composition according to laser fluence. The nanostructures were shown to contain iron and platinum only by energy-dispersive spectroscopy at several spots. The response of these iron–platinum nanoparticles to infrared depends on their stoichiometric composition, which is controlled by laser fluence.
机译:248纳米激光对液态前驱物在100–375 mJ / cm 2 的不同能量密度下的辐照产生了高度结晶的纳米球形铁铂体系。系统地研究了激光强度对粒度,铁成分和结构的影响。未经退火即可获得铁铂合金和化学无序的铁铂L10相的不同纳米结构。制备的前体溶液通过乙酰丙酮铁(III)和乙酰丙酮铂(II)进行深度光解,形成多晶铁铂纳米合金。 Fe(II)和Pt(I)乙酰丙酮分解为Fe 0 和Pt 0 纳米粒子。我们发现(001)衍射峰线性移动到一个较小的角度,最后一个峰与其他峰相反。这导致面心立方L10结构根据激光能量密度而改变其成分。仅通过能量分散光谱在几个点处显示出纳米结构包含铁和铂。这些铁-铂纳米粒子对红外的响应取决于其化学计量组成,该化学计量组成受激光能量密度控制。

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