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Electron Microscopy Imaging of Zinc Soaps Nucleation in Oil Paint

机译:电子显微镜成像在油漆中含锌肥皂成核

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摘要

Using the recently developed techniques of electron tomography, we have explored the first stages of disfiguring formation of zinc soaps in modern oil paintings. The formation of complexes of zinc ions with fatty acids in paint layers is a major threat to the stability and appearance of many late 19th and early 20th century oil paintings. Moreover, the occurrence of zinc soaps in oil paintings leading to defects is disturbingly common, but the chemical reactions and migration mechanisms leading to large zinc soap aggregates or zones remain poorly understood. State-of-the-art scanning (SEM) and transmission (TEM) electron microscopy techniques, primarily developed for biological specimens, have enabled us to visualize the earliest stages of crystalline zinc soap growth in a reconstructed zinc white (ZnO) oil paint sample. In situ sectioning techniques and sequential imaging within the SEM allowed three-dimensional tomographic reconstruction of sample morphology. Improvements in the detection and discrimination of backscattered electrons enabled us to identify local precipitation processes with small atomic number contrast. The SEM images were correlated to low-dose and high-sensitivity TEM images, with high-resolution tomography providing unprecedented insight into the structure of nucleating zinc soaps at the molecular level. The correlative approach applied here to study phase separation, and crystallization processes specific to a problem in art conservation creates possibilities for visualization of phase formation in a wide range of soft materials.
机译:利用最近开发的电子断层扫描技术,我们探讨了现代油画中锌肥皂形成的第一阶段。涂料层中脂肪酸的锌离子复合物的形成是对19世纪末和20世纪初的油画初期的稳定性和外观的重大威胁。此外,导致缺陷的油画中皂肥皂的发生是令人不安的,但导致大锌肥皂聚集体或区域的化学反应和迁移机制仍然明显。最先进的扫描(SEM)和变速器(TEM)电子显微镜技术,主要用于生物标本,使我们能够在重建的锌白色(ZnO)油漆样品中可视化结晶锌皂生长的最早阶段。在原位切片技术和SEM内的顺序成像允许的三维断层改造样品形态。对反向散射电子的检测和辨别的改进使我们能够识别具有小原子数对比的局部降水过程。 SEM图像与低剂量和高灵敏度TEM图像相关,具有高分辨率断层扫描,从分子水平处于成核锌肥皂的结构提供前所未有的洞察力。这里应用的相关方法研究了艺术保守中的问题的分离,以及特异性的结晶方法会产生用于在各种软材料中可视化相位形成的可能性。

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