A new conservation material for gold in heritage wall paintings: polymer-stabilized nanogold gels (NGGs).

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY Nanoscale Advances Pub Date : 2024-12-11 DOI:10.1039/d4na00877d
Maram Na'es, Lars Lühl, Birgit Kanngießer
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Abstract

Gilded wall paintings such as those in Petra-Jordan undergo deterioration processes such as delamination and loss of the gold layer. The aim of this work is to produce a functioning long-lasting adhesive that compensates for binder and gold loss while stabilising the gold layer. Polymer-stabilised gold nanoparticles (AuNPs) as a conservation material for gilded heritage paintings (Nano Gold Gel (NGG)) were synthesised using two facile and affordable synthesis approaches. AuNPs enhance the stability of the adhesive polymer over time and introduce mass conservation to the gold layer. Two natural polymers and one synthetic polymer, frequently used in conservation as adhesives, were used as reducing agents and stabilisers for the nanoparticles. The chemical alteration of the polymers and the Au-polymer interaction at the molecular level were investigated with FTIR spectroscopy, while the chemical environment of gold was investigated with X-ray absorption spectroscopy (XANES/EXAFS). The synthesized NGG was applied on the replica samples to reattach the gold layer to its support. Characterisation results indicate that the formation of AuNPs stabilised by the three polymers did not alter the chemical structure of the polymers. The applied NGG successfully achieved re-adhesion and exhibited appropriate optical and chemical properties for use as a conservation material.

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一种新的文物壁画金保护材料:聚合物稳定纳米金凝胶(NGGs)。
彼得雷乌斯-约旦的镀金壁画经历了诸如分层和金层损失等变质过程。这项工作的目的是生产一种功能持久的粘合剂,在稳定金层的同时补偿粘合剂和金的损失。采用两种简便、经济的合成方法合成了聚合物稳定金纳米颗粒(AuNPs)作为镀金文物画的保护材料(纳米金凝胶(NGG))。随着时间的推移,AuNPs增强了粘合聚合物的稳定性,并引入了金层的质量守恒。两种天然聚合物和一种合成聚合物被用作纳米颗粒的还原剂和稳定剂,这两种天然聚合物和一种合成聚合物经常被用作粘合剂。用FTIR光谱研究了聚合物的化学变化和au -聚合物在分子水平上的相互作用,用x射线吸收光谱(XANES/EXAFS)研究了金的化学环境。将合成的NGG涂在复制样品上,使金层重新附着在其载体上。表征结果表明,三种聚合物稳定的AuNPs的形成并没有改变聚合物的化学结构。所应用的NGG成功地实现了再粘附,并表现出适当的光学和化学性质,可作为保护材料使用。
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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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