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用于减轻铁胆墨水腐蚀对纤维素载体影响的多金属氧酸盐离子液体

Polyoxometalate-Ionic Liquids for Mitigating the Effects of Iron Gall Ink Corrosion on Cellulosic Supports.

作者信息

Nunes Margarida, García-Orduña Pilar, Atrián-Blasco Elena, Costa Vieira Joana, Costa Ana Paula, Cabral Amaral Maria Emília, Claro Ana, Ferreira Teresa, Mitchell Scott G

机构信息

HERCULES Laboratory/IN2PAST, Associate Laboratory for Research and Innovation in Heritage, Arts, Sustainability and Territory, University of Évora, Evora 7004-516, Portugal.

Instituto de Síntesis Química y Catálisis Homogénea (ISQCH), CSIC-Universidad de Zaragoza, Zaragoza 50009, Spain.

出版信息

ACS Omega. 2024 Aug 18;9(34):36609-36621. doi: 10.1021/acsomega.4c04925. eCollection 2024 Aug 27.

Abstract

Iron gall ink (IGI), renowned for its indelibility, was the most important writing ink in the Western world from the 15th to the late 19th century. However, it is now known that IGIs induce acid-catalyzed hydrolysis and iron-catalyzed oxidation of the cellulose in historical paper documents. These mechanisms of deterioration cause significant damage to the writing support materials, including color alteration and burn-through appearance, and in the worst scenarios, physical disintegration of the supports. Minimally invasive, long-term effective conservation treatments that tackle the underlying mechanisms of IGI degradation and their corrosion effects are yet to be developed. This study introduces the deployment of hydrophobic and anticorrosive polyoxometalate-ionic liquids (POM-ILs) as colorless coatings to counteract IGI-corrosion of cellulosic supports. Model IGI-containing papers (mockups) were prepared, coated with POM-ILs, and artificially aged to assess the compatibility of POM-ILs with IGI-containing documents. Comprehensive monitoring using colorimetric and scanning electron microscopy-energy-dispersive X-ray spectroscopy (SEM/EDS) analyses showed minimal interference with the aesthetic properties and morphology of the IGI mockups. In addition, polyoxometalates (POMs) with vacant metal atom sites in the cluster shell can be used to coordinate free transition metal ions. The ability of a monolacunary Keggin-type polyoxotungstate to coordinate free Fe(II) from IGI solution was demonstrated using UV-vis analysis. This led to the formation of a dimeric species, [(SiWOFe)O]K·28HO, which was characterized by single-crystal X-ray diffraction. Altogether, this study points to POM-ILs as promising protective coatings for effectively preserving historical IGI-written heritage.

摘要

铁胆墨水(IGI)以其不可磨灭性而闻名,在15世纪至19世纪后期是西方世界最重要的书写墨水。然而,现在已知IGI会引发历史纸质文件中纤维素的酸催化水解和铁催化氧化。这些降解机制对书写载体材料造成了严重损害,包括颜色改变和烧穿现象,在最糟糕的情况下,载体还会物理解体。针对IGI降解及其腐蚀效应的潜在机制,尚未开发出微创、长期有效的保护处理方法。本研究介绍了疏水性和防腐性的多金属氧酸盐离子液体(POM-ILs)作为无色涂层的应用,以对抗纤维素载体的IGI腐蚀。制备了含IGI的模型纸张(模型),用POM-ILs进行涂层,并进行人工老化,以评估POM-ILs与含IGI文件的兼容性。使用比色法和扫描电子显微镜-能量色散X射线光谱(SEM/EDS)分析进行的综合监测表明,对IGI模型的美学特性和形态的干扰最小。此外,簇壳中具有空金属原子位点的多金属氧酸盐(POMs)可用于配位游离的过渡金属离子。使用紫外-可见光谱分析证明了单缺位Keggin型多金属氧钨酸盐配位IGI溶液中游离Fe(II)的能力。这导致形成了一种二聚体物种[(SiWOFe)O]K·28HO,通过单晶X射线衍射对其进行了表征。总之,本研究指出POM-ILs是有效保护历史IGI书写遗产的有前景的保护涂层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ef8/11360026/8e4903036881/ao4c04925_0001.jpg

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