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通过透射电子显微镜(TEM)和扫描透射电子显微镜-电子能量损失谱(STEM-EELS)对激光诱导黄变进行纳米尺度研究。

Nanoscale investigation by TEM and STEM-EELS of the laser induced yellowing.

作者信息

Godet Marie, Vergès-Belmin Véronique, Gauquelin Nicolas, Saheb Mandana, Monnier Judith, Leroy Eric, Bourgon Julie, Verbeeck Johan, Andraud Christine

机构信息

Laboratoire de Recherche des Monuments Historiques (CRC-LRMH USR 3224), 29 rue de Paris 77420 Champs-sur-Marne, France; Centre de Recherche et Conservation des Collections (CRC-CRCC USR 3224), 36 rue Geoffroy-Saint-Hilaire - CP 21, 75005 Paris, France; SILLTEC, Domaine Technologique de Saclay, 4, rue René Razel, 91400 Saclay, France.

Laboratoire de Recherche des Monuments Historiques (CRC-LRMH USR 3224), 29 rue de Paris 77420 Champs-sur-Marne, France.

出版信息

Micron. 2018 Dec;115:25-31. doi: 10.1016/j.micron.2018.08.006. Epub 2018 Aug 18.

Abstract

Nd-YAG QS laser cleaning of soiled stone at 1064 nm can sometimes result in a more yellow appearance compared to other cleaning techniques. Especially in France, this yellowing effect is still considered as a major aesthetic issue by the architects and conservators. One explanation states that the yellowing is linked to the formation of iron-rich nanophase(s) through the laser beam interaction with black crusts that would re-deposit on the cleaned substrate after irradiation. To characterize these nanophases, a model crust containing hematite was elaborated and laser irradiated using a Nd-YAG QS laser. The color of the sample shifted instantaneously from red to a bright yellow and numerous particles were ablated in a visible smoke. Transmission electron microscopy (TEM) was used to examine the morphology and the crystallinity of the neo-formed compounds, both on the surface of the samples and in the ablated materials. In addition, an investigation of the chemical and structural properties of the nanophases was conducted by X-ray dispersive energy (EDX) and electron energy loss (EELS) spectroscopies. It was found that both the surface of the sample and the ablated materials are covered by crystallized nano-spheres and nano-residues, all containing iron and oxygen, sometimes along with calcium and sulfur. In particular an interfacial area containing the four elements was evidenced between some nanostructures and the substrate. Magnetite FeO was also identified at the nanoscale. This study demonstrates that the laser yellowing of a model crust is linked to the presence of iron-rich nanophases including CaFeSO nanostructures and magnetite FeO at the surface after irradiation.

摘要

与其他清洁技术相比,钕钇铝石榴石调Q激光在1064纳米波长下对污染石材进行清洁时,有时会使石材外观更偏黄。特别是在法国,这种泛黄效应仍被建筑师和文物保护者视为一个主要的美学问题。一种解释认为,泛黄与通过激光束与黑色硬壳相互作用形成富含铁的纳米相有关,这些纳米相在辐照后会重新沉积在清洁后的基材上。为了表征这些纳米相,制备了一种含有赤铁矿的模拟硬壳,并使用钕钇铝石榴石调Q激光进行辐照。样品的颜色瞬间从红色变为亮黄色,并且有大量颗粒在可见烟雾中被烧蚀。使用透射电子显微镜(TEM)来检查新形成化合物在样品表面和烧蚀材料中的形态和结晶度。此外,通过X射线能量色散(EDX)和电子能量损失(EELS)光谱对纳米相的化学和结构性质进行了研究。结果发现,样品表面和烧蚀材料均被结晶的纳米球和纳米残留物覆盖,所有这些都含有铁和氧,有时还含有钙和硫。特别是在一些纳米结构与基材之间发现了一个包含这四种元素的界面区域。在纳米尺度上还鉴定出了磁铁矿FeO。这项研究表明,模拟硬壳的激光泛黄与辐照后表面存在包括CaFeSO纳米结构和磁铁矿FeO在内的富含铁纳米相有关。

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