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Stoichiometry of alloy nanoparticles from laser ablation of PtIr in acetone and their electrophoretic deposition on PtIr electrodes

机译:丙酮中PtIr激光烧蚀形成的合金纳米粒子的化学计量及其在PtIr电极上的电泳沉积

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摘要

Charged Pt-Ir alloy nanoparticles are generated through femtosecond laser ablation of a Pt9Ir target in acetone without using chemical precursors or stabilizing agents. Preservation of the target's stoichiometry in the colloidal nanoparticles is confirmed by transmission electron microscopy (TEM)-energy-dispersive x-ray spectroscopy (EDX), high angle annular dark field (HAADF) scanning transmission electron microscopy (STEM)-EDX elemental maps, high resolution TEM and selected area electron diffraction (SAED) measurements. Results are discussed with reference to thermophysical properties and the phase diagram. The nanoparticles show a lognormal size distribution with a mean Feret particle size of 26nm. The zeta potential of - 45mV indicates high stability of the colloid with a hydrodynamic diameter of 63nm. The charge of the particles enables electrophoretic deposition of nanoparticles, creating nanoscale roughness on three-dimensional PtIr neural electrodes within a minute. In contrast to coating with Pt or Ir oxides, this method allows modification of the surface roughness without changing the chemical composition of PtIr.
机译:带电的Pt-Ir合金纳米粒子是通过飞秒激光烧蚀丙酮中的Pt9Ir靶而产生的,而无需使用化学前体或稳定剂。通过透射电子显微镜(TEM)-能量色散X射线光谱(EDX),高角度环形暗场(HAADF)扫描透射电子显微镜(STEM)-EDX元素图确认了胶体纳米颗粒中目标化学计量的保留,高分辨率TEM和选定区域电子衍射(SAED)测量。参考热物理性质和相图讨论结果。纳米颗粒显示出对数正态尺寸分布,平均Feret粒径为26n​​m。 -45mV的zeta电位表示胶体的高度稳定性,其流体动力学直径为63nm。粒子的电荷使纳米粒子能够电泳沉积,在一分钟内在三维PtIr神经电极上产生纳米级粗糙度。与用Pt或Ir氧化物涂覆相比,此方法可在不改变PtIr的化学成分的情况下改变表面粗糙度。

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