Insight into the structure of black coatings of ancient Egyptian mummies by advanced electron magnetic resonance of vanadyl complexes.

Q3 Physics and Astronomy
Magnetic resonance (Gottingen, Germany) Pub Date : 2022-07-13 eCollection Date: 2022-01-01 DOI:10.5194/mr-3-111-2022
Charles E Dutoit, Laurent Binet, Hervé Vezin, Océane Anduze, Agnès Lattuati-Derieux, Didier Gourier
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引用次数: 1

Abstract

Ancient Egyptian mummies from the Late Period to the Greco-Roman Period were covered by a black coating consisting of complex and heterogeneous mixtures of conifer resins, wax, fat and oil with variable amounts of bitumen. Natural bitumen always contains traces of vanadyl porphyrin complexes that we used here as internal probes to explore the nanoscale environment of V4+ ions in these black coatings by electron nuclear double resonance (ENDOR) and hyperfine sub-level correlation spectroscopy (HYSCORE). Four types of vanadyl porphyrin complexes were identified from the analysis of 14N hyperfine interactions. Three types (referred to as VO-P1, VO-P2 and VO-P3) are present in natural bitumen from the Dead Sea, among which VO-P1 and VO-P2 are also present in black coatings of mummies. The absence of VO-P3 in mummies, which is replaced by another complex, VO-P4, may be due to its transformation during preparation of the black matter for embalming. Analysis of 1H hyperfine interaction shows that bitumen and other natural substances are intimately mixed in these black coatings, with aggregate sizes of bitumen increasing with the bitumen content but not exceeding a few nanometres.

Abstract Image

Abstract Image

Abstract Image

通过钒基络合物的高级电子磁共振深入了解古埃及木乃伊黑色涂层的结构。
从晚期到希腊罗马时期的古埃及木乃伊被一层黑色涂层覆盖,该涂层由针叶树树脂、蜡、脂肪和油与不同数量的沥青的复杂和不均匀混合物组成。天然沥青总是含有痕量的钒基卟啉络合物,我们在这里使用这些络合物作为内部探针,通过电子核双共振(ENDOR)和超精细亚能级相关光谱(HYSCORE)来探索这些黑色涂层中V4+离子的纳米级环境。通过对14N超精细相互作用的分析,鉴定出四种类型的钒基卟啉配合物。死海天然沥青中存在三种类型(称为VO-P1、VO-P2和VO-P3),其中VO-P1和VO-P2也存在于木乃伊的黑色涂层中。木乃伊中VO-P3的缺失,被另一种复合物VO-P4所取代,可能是由于其在准备防腐的黑物质过程中发生了转变。1H超精细相互作用的分析表明,沥青和其他天然物质在这些黑色涂层中紧密混合,沥青的骨料尺寸随着沥青含量的增加而增加,但不超过几个纳米。
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来源期刊
CiteScore
4.50
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审稿时长
14 weeks
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