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  4. Investigation of the foil structure and corrosion mechanisms of modern Zwischgold using advanced analysis techniques
 

Investigation of the foil structure and corrosion mechanisms of modern Zwischgold using advanced analysis techniques

URI
https://arbor.bfh.ch/handle/arbor/40143
Version
Published
Date Issued
2018
Author(s)
Wu, Qing
Soppa, Karolina  
Scherrer, Nadim  
Watts, Benjamin
Yokosawa, Tadahiro
Bernard, Laetitia
Araki, Tohru
Döbeli, Max
Meyer, Markus
Spiecker, Erdmann
Fink, Rainer H.
Type
Article
Language
English
Subjects

Zwischgold Interdiffu...

Abstract
Zwischgold is a two-sided metal foil made by adhering a gold leaf over a silver leaf to present a gold surface while using less gold than gold foils. Corroded Zwischgold surfaces appear dark, accompanied by gloss loss and possible mechanical stability issues. Zwischgold applied artefacts are commonly found in museums and churches across Europe and they currently face an uncertain future as conservators have little knowledge to base conservation treatments on. We present a comprehensive material analysis of Zwischgold models through advanced characterization techniques including focused ion beam coupled with scanning electron microscopy (FIB-SEM), transmission electron microscopy (TEM), scanning transmission X-ray microscopy (STXM), time-of-flight secondary ion mass spectrometry (TOF-SIMS) and Rutherford backscattering spectrometry (RBS). Complementary information on the foil thickness, sharpness of the gold-silver interface, gold purity, and the formation as well as distribution of corrosion products on Zwischgold models have been obtained, representing a starting point for understanding the morphology and the long-term chemistry of Zwischgold artefacts. (C) 2017 The Authors. Published by Elsevier Masson SAS.
Subjects
NB Sculpture
DOI
10.24451/arbor.8090
https://doi.org/10.24451/arbor.8090
Publisher DOI
10.1016/j.culher.2017.12.005
Journal or Serie
Journal of Cultural Heritage
ISSN
1296-2074
Related URL
http://WOS:000430417500013 pub
Organization
Hochschule der Künste Bern  
Institut Materialität in Kunst und Kultur  
HKB Lehre  
Materialforschung in Kunst und Kultur  
Volume
31
Publisher
Elsevier
Submitter
Scherrer, Nadim
Citation apa
Wu, Q., Soppa, K., Scherrer, N., Watts, B., Yokosawa, T., Bernard, L., Araki, T., Döbeli, M., Meyer, M., Spiecker, E., & Fink, R. H. (2018). Investigation of the foil structure and corrosion mechanisms of modern Zwischgold using advanced analysis techniques. In Journal of Cultural Heritage (Vol. 31, pp. 122–132). Elsevier. https://doi.org/10.24451/arbor.8090
Note
Notes: ISI Document Delivery No.: GD3QB Times Cited: 0 Cited Reference Count: 48 Wu, Qing Soppa, Karolina Scherrer, Nadim Watts, Benjamin Yokosawa, Tadahiro Bernard, Laetitia Araki, Tohru Dobeli, Max Meyer, Markus Spiecker, Erdmann Fink, Rainer H. Research Area "Materiality of Art and Culture" of the Bern University of the Applied Science - Bern University of the Arts (Switzerland); Paul Scherrer Institute (Switzerland); Bernische Denkmalpflege - Stiftung (Switzerland); BMBF [05K16WED]; [GRK 1846] This work was supported by the Research Area "Materiality of Art and Culture" of the Bern University of the Applied Science - Bern University of the Arts (Switzerland), Paul Scherrer Institute (Switzerland) and Bernische Denkmalpflege - Stiftung (Switzerland). MM and RHF acknowledge financial support through GRK 1846 and BMBF, contract 05K16WED. Elsevier france-editions scientifiques medicales elsevier Issy-les-moulineaux
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Date: 2018
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