De Anda Villa Manuel, Gaudin Jérôme, Amans David, Boudjada Fahima, Bozek John, Evaristo Grisenti Robert, Lamour Emily, Laurens Gaétan, Macé Stéphane, Nicolas Christophe, Papagiannouli Irene, Patanen Minna, Prigent Christophe, Robert Emmanuel, Steydli Sébastien, Trassinelli Martino, Vernhet Dominique, Lévy Anna
Institut des Nanosciences de Paris , Sorbonne Université-Pierre et Marie Curie , CNRS UMR7588 , 75005 Paris , France.
CNRS, CEA, CELIA (Centre Lasers Intenses et Applications) , Univeristy of Bordeaux , UMR5107 , F-33405 Talence , France.
Langmuir. 2019 Sep 10;35(36):11859-11871. doi: 10.1021/acs.langmuir.9b02159. Epub 2019 Aug 27.
The surface chemistry of gold nanoparticles produced by the pulsed laser ablation in liquids method is investigated by X-ray photoelectron spectroscopy (XPS). The presence of surface oxide expected on these systems is investigated using synchrotron radiation in conditions close to their original state in solvent but free from substrate or solvent effects which could affect the interpretation of spectroscopic observations. For that purpose we performed the experiment on a controlled free-standing nanoparticle beam produced by combination of an atomizer and an aerodynamic lens system. These results are compared with those obtained by the standard situation of deposited nanoparticles on silicon substrate. An accurate analysis based on Bayesian statistics concludes that the existence of oxide in the free-standing conditions cannot be solely confirmed by the recorded core-level 4f spectra. If present, our data indicate an upper limit of 2.15 ± 0.68% of oxide. However, a higher credence to the hypothesis of its existence is brought by the structureless valence profile of the free-standing beam. Moreover, the cross-comparison with the deposited nanoparticles case clearly evidences an important misleading substrate effect. Experiment with free-standing nanoparticles is then demonstrated to be the right way to further investigate oxidation states on Au nanoparticles.
采用X射线光电子能谱(XPS)对液体中脉冲激光烧蚀法制备的金纳米颗粒的表面化学进行了研究。利用同步辐射在接近其在溶剂中的原始状态但不受可能影响光谱观测解释的基底或溶剂效应的条件下,研究了这些体系中预期存在的表面氧化物。为此,我们对由雾化器和气动透镜系统组合产生的可控独立纳米颗粒束进行了实验。将这些结果与在硅基底上沉积纳米颗粒的标准情况所获得的结果进行了比较。基于贝叶斯统计的精确分析得出结论,独立条件下氧化物的存在不能仅通过记录的芯能级4f光谱来确认。如果存在,我们的数据表明氧化物的上限为2.15±0.68%。然而,独立束无结构的价态分布使人们对其存在的假设更有信心。此外,与沉积纳米颗粒情况的交叉比较清楚地证明了基底效应具有重要的误导性。然后证明对独立纳米颗粒进行实验是进一步研究金纳米颗粒氧化态的正确方法。