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Ion specific effects on the immobilisation of charged gold nanoparticles on metal surfaces

机译:离子对金属表面带电金纳米粒子固定的特异性效应

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摘要

Since the pioneering work of F. Hofmeister, Arch. Exp. Pathol. Pharmakol., 1888, 24, 247, ion specific effects have been steadily reported in the context of colloidal or protein stabilisation in electrolyte solutions. Although the observed effects are omnipresent in chemistry and biology, their origin is still under ferocious discussion. Here, we report on ion specific effects affecting the self-assembly of amine and carboxylic acid functionalised gold nanoparticles on metal surfaces as well as in electrolyte solution as a function of the monovalent cations Li+, Na+, K+ and Cs+. Mercaptooctanoic acid and 1,8-amine-octanethiol functionalised gold nanoparticles were adsorbed on structured AuPd/Pt substrates under addition of the respective chloride salts. Furthermore, the influence of the same salts on the salt induced aggregation of these AuNP was investigated. Our results demonstrate that the assembly processes on the metal surface as well as in electrolyte solution are influenced by the addition of different cations. We attribute the observed effects to ion pairing of the functional end groups with the added cations. With these findings we introduce a new parameter to control the self-assembly of 2D AuNP arrays on solid supports or of 3D AuNP networks in solution, which could be of relevance for the fabrication of new tailor-made functional materials or for biomedical applications.
机译:自F. Hofmeister的开创性工作以来,拱门。 Exp。 Pathol。 Pharmakol.1888,24,247,在电解质溶液中胶体或蛋白质稳定化的背景下稳定地报道了离子特异性效果。虽然观察到的效果是化学和生物学的全部,但它们的起源仍处于凶猛的讨论。在此,我们报告影响金属表面上的胺和羧酸官能化金纳米颗粒的自组装以及电解质溶液的离子特异性效应,以及单价阳离子Li +,Na +,K +和Cs +的函数。巯木辛酸和1,8-胺 - 辛硫醇官能化金纳米颗粒在加入各自的氯化物盐的结构化AUPD / Pt基材上吸附。此外,研究了相同盐对这些AUNP的盐诱导聚集的影响。我们的结果表明,金属表面以及电解质溶液中的装配过程受到不同阳离子的影响。我们将观察到的效果归因于具有添加的阳离子的功能结束组的离子配对。通过这些发现,我们介绍了一种新参数,以控制固体支持或解决方案中的3D AUNP网络的2D AUNP阵列的自组装,这可能具有对制造新的定制功能材料或生物医学应用的相关性。

著录项

  • 来源
    《RSC Advances》 |2018年第3期|共8页
  • 作者

    Kaulen C.; Simon U.;

  • 作者单位

    Rhein Westfal TH Aachen JARA FIT D-52074 Aachen Germany;

    Rhein Westfal TH Aachen JARA FIT D-52074 Aachen Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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