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When gold stops glittering: corrosion mechanisms of Rene Lalique's Art Nouveau jewellery

机译:当黄金不再闪闪发光时:Rene Lalique的新艺术风格珠宝的腐蚀机理

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摘要

Art Nouveau jewellery created by Rene Lalique is presently corroded. To identify the corrosion processes, Au-Ag-Cu alloys with compositions comparable to those used in Rene Lalique's jewellery were fabricated to be exposed to sulphide-containing environments. Using SEM-EDS, XRD, UV-Vis spectroscopy and ellipsometry, it was for the first time demonstrated that at the surface of tarnished Au alloys forms a corrosion film with a layer-by-layer structure. Considering the complex refractive indices of bulk Cu and Ag oxides and sulphides, a two-step corrosion mechanism was proposed. The formation of Cu-based compounds during the early corrosion stages is followed by the formation of Ag-based compounds. The thickness of the formed film, shown for one of the gold alloys to be 80 nm, is due to the corrosion kinetics controlled by the presence of Au and by the formation of a Au-S self-assembled monolayer. The corrosion mechanism of gold alloys raises a new conservation challenge concerning the removal of nanometric layers.
机译:雷内·拉里克(Rene Lalique)创作的新艺术风格珠宝目前受到腐蚀。为了确定腐蚀过程,制造了与Rene Lalique珠宝中使用的成分相当的Au-Ag-Cu合金,使其暴露于含硫化物的环境中。使用SEM-EDS,XRD,UV-Vis光谱和椭偏仪,首次证明在失去光泽的Au合金表面形成了具有逐层结构的腐蚀膜。考虑到块状Cu和Ag的氧化物和硫化物的复杂折射率,提出了两步腐蚀机理。在腐蚀的早期阶段形成Cu基化合物,然后形成Ag基化合物。对于一种金合金而言,所形成的膜的厚度为80nm,这是由于通过存在Au和通过形成Au-S自组装单层来控制腐蚀动力学。金合金的腐蚀机理提出了关于去除纳米层的新的保护挑战。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2019年第6期|1216-1222|共7页
  • 作者单位

    Archeofactu, Rua Cerrado Oliveiras 14,2Dto, P-2610035 Alfragide, Portugal|LIBPhys UNL, Campus Caparica, P-2829516 Lisbon, Portugal;

    Univ Lisbon, Ctr Quim Estrutural, Ctr Quim & Bioquim, Fac Ciencias, P-1749016 Lisbon, Portugal;

    Univ Lisbon, Ctr Quim Estrutural, Ctr Quim & Bioquim, Fac Ciencias, P-1749016 Lisbon, Portugal;

    LEN UER, LNEG, Estr Paco Lumiar 22, P-1649038 Lisbon, Portugal;

    LIBPhys UNL, Campus Caparica, P-2829516 Lisbon, Portugal|MAE, UMR CNRS ArchAm 8096, 21 Allee Univ, F-92023 Nanterre, France;

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