On-Site Raman and XRF Study of Complex Metal Patinas and Cloisonné Enamels From 19th-Century Christofle Masterpieces: Technological Study of the Decoration Techniques

IF 2.4 3区 化学 Q2 SPECTROSCOPY
Julie Schröter, Philippe Colomban, Michel Bouchard, Ludovic Bellot-Gurlet, Audrey Gay-Mazuel
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Abstract

A major effort in technological development was conducted during the 19th century. The polychrome surfaces of the metal parts of a corner cabinet, a torch vase, an “elephant” vase, and a candelabra pair designed by Emile Reiber between 1874 and 1878 for the Christofle & Cie Company were investigated on site by means of noninvasive Raman, FTIR, and X-ray fluorescence spectroscopy after examination under white light at different magnifications and under UV illumination. Despite the low thickness of the patinas (a few tens of microns) different (electro)chemically formed phases were identified in these layers (Cu2O, Ag2S, CuS or Cu2S, and sulfates). Residues of organic conservation products are identified by FTIR reflectance. The results are compared with the information available in the patents filed by the company as well as other written sources from that period. The pigments and opacifiers (Naples yellows, lead arsenates, fluorite, spinels, cassiterite, and chromates), and the vitreous matrices of the cloisonné enamels of the objects above are identified and testify to the deliberate combination of European and Asian enameling techniques.

Abstract Image

19世纪克里斯托弗杰作中复杂金属铜绿和景泰蓝珐琅的现场拉曼和XRF研究:装饰技术的技术研究
19世纪是科技发展的主要时期。一个角柜、一个火炬花瓶、一个“大象”花瓶和一对烛台的金属部件的彩色表面,由埃米尔·赖伯(Emile Reiber)在1874年至1878年之间为克里斯托弗博物馆(Christofle &;在不同倍率的白光和紫外线照射下检查后,采用无创拉曼光谱、红外光谱和x射线荧光光谱对Cie公司进行了现场调查。尽管铜绿的厚度很低(几十微米),但在这些层中发现了不同的(电)化学形成的相(Cu2O, Ag2S, cu或Cu2S以及硫酸盐)。利用FTIR反射率对有机保护产品的残留物进行了识别。这些结果将与该公司提交的专利中提供的信息以及同期的其他书面资料进行比较。上述物品的颜料和不透明剂(那不勒斯黄、砷酸铅、萤石、尖晶石、锡石和铬酸盐)以及景泰蓝珐琅的玻璃基质被鉴定出来,证明了欧洲和亚洲珐琅技术的精心结合。
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来源期刊
CiteScore
5.40
自引率
8.00%
发文量
185
审稿时长
3.0 months
期刊介绍: The Journal of Raman Spectroscopy is an international journal dedicated to the publication of original research at the cutting edge of all areas of science and technology related to Raman spectroscopy. The journal seeks to be the central forum for documenting the evolution of the broadly-defined field of Raman spectroscopy that includes an increasing number of rapidly developing techniques and an ever-widening array of interdisciplinary applications. Such topics include time-resolved, coherent and non-linear Raman spectroscopies, nanostructure-based surface-enhanced and tip-enhanced Raman spectroscopies of molecules, resonance Raman to investigate the structure-function relationships and dynamics of biological molecules, linear and nonlinear Raman imaging and microscopy, biomedical applications of Raman, theoretical formalism and advances in quantum computational methodology of all forms of Raman scattering, Raman spectroscopy in archaeology and art, advances in remote Raman sensing and industrial applications, and Raman optical activity of all classes of chiral molecules.
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