Correlated x-ray fluorescence and ptychographic nano-tomography on Rembrandt’s The Night Watch reveals unknown lead “layer”

Author:

Broers Fréderique T.H.1234ORCID,Verslype Ige1ORCID,Bossers Koen W.3ORCID,Vanmeert Frederik145ORCID,Gonzalez Victor1ORCID,Garrevoet Jan6ORCID,van Loon Annelies1ORCID,van Duijn Esther1ORCID,Krekeler Anna1ORCID,De Keyser Nouchka124ORCID,Steeman Ilse1ORCID,Noble Petria1ORCID,Janssens Koen14ORCID,Meirer Florian3ORCID,Keune Katrien12ORCID

Affiliation:

1. Science Department, Conservation & Science, Scientific Research, Rijksmuseum, Hobbemastraat 22, 1071 ZC, Amsterdam, Netherlands.

2. Van ’t Hoff Institute for Molecular Sciences, University of Amsterdam, Science Park 904, 1090 GD, Amsterdam, Netherlands.

3. Inorganic Chemistry and Catalysis, Debye Institute for Nanomaterials Science and Institute for Sustainable and Circular Chemistry, Utrecht University, Universiteitsweg 99, 3584 CG Utrecht, Netherlands.

4. Antwerp X-ray Imaging and Spectroscopy laboratory, University of Antwerp, Groenenborgerlaan 171, 2020 Antwerp, Belgium.

5. Paintings Laboratory, Royal Institute for Cultural Heritage (KIK-IRPA), Jubelpark 1, 1000 Brussels, Belgium.

6. Photon Science at Deutsches Elektronen-Synchrotron DESY, Hamburg 22607, Germany.

Abstract

The Night Watch , one of the most famous masterpieces by Rembrandt, is the subject of a large research and conservation project. For the conservation treatment, it is of great importance to understand its current condition. Correlated nano-tomography using x-ray fluorescence and ptychography revealed a—so far unknown—lead-containing “layer”, which likely acts as a protective impregnation layer applied on the canvas before the quartz-clay ground was applied. This layer might explain the presence of lead soap protrusions in areas where no other lead components are present. In addition to the three-dimensional elemental mapping, ptychography visualizes and quantifies components not detectable by hard x-ray fluorescence such as the organic fraction and quartz. The first-time use of this combination of synchrotron-based techniques on a historic paint micro-sample shows it to be an important tool to better interpret the results of noninvasive imaging techniques operating on the macroscale.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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