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Solvent-surface interactions control the phase structure in laser-generated iron-gold core-shell nanoparticles

机译:溶剂-表面相互作用控制激光生成的铁-金-核-壳纳米粒子的相结构

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摘要

This work highlights a strategy for the one-step synthesis of FeAu nanoparticles by the pulsed laser ablation of alloy targets in the presence of different solvents. This method allows particle generation without the use of additional chemicals; hence, solvent-metal interactions could be studied without cross effects from organic surface ligands. A detailed analysis of generated particles via transmission electron microscopy in combination with EDX elemental mapping could conclusively verify that the nature of the used solvent governs the internal phase structure of the formed nanoparticles. In the presence of acetone or methyl methacrylate, a gold shell covering a non-oxidized iron core was formed, whereas in aqueous media, an Au core with an Fe3O4 shell was generated. This core-shell morphology was the predominant species found in >90% of the examined nanoparticles. These findings indicate that fundamental chemical interactions between the nanoparticle surface and the solvent significantly contribute to phase segregation and elemental distribution in FeAu nanoparticles. A consecutive analysis of resulting Fe@Au core-shell nanoparticles revealed outstanding oxidation resistance and fair magnetic and optical properties. In particular, the combination of these features with high stability magnetism and plasmonics may create new opportunities for this hybrid material in imaging applications.
机译:这项工作突出了一种在不同溶剂存在下通过脉冲激光烧蚀合金靶材来一步合成FeAu纳米颗粒的策略。这种方法无需使用额外的化学物质即可产生颗粒。因此,可以在没有有机表面配体交叉影响的情况下研究溶剂与金属的相互作用。通过透射电子显微镜结合EDX元素图谱对生成的颗粒进行详细分析,可以最终验证所用溶剂的性质决定了所形成纳米颗粒的内相结构。在丙酮或甲基丙烯酸甲酯的存在下,形成了覆盖未氧化铁核的金壳,而在水性介质中,生成了具有Fe3O4壳的Au核。这种核-壳形态是在> 90%的被检查纳米颗粒中发现的主要物种。这些发现表明,纳米颗粒表面和溶剂之间的基本化学相互作用极大地促进了FeAu纳米颗粒中的相分离和元素分布。对生成的Fe @ Au核壳纳米粒子的连续分析显示出出色的抗氧化性以及合理的磁性和光学性质。特别地,这些特征与高稳定性磁性和等离激元的结合可以为这种混合材料在成像应用中创造新的机会。

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