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用于艺术品清洁的纳米结构生物基蓖麻油有机凝胶

Nanostructured bio-based castor oil organogels for the cleaning of artworks.

作者信息

Poggi Giovanna, Santan Harshal D, Smets Johan, Chelazzi David, Noferini Daria, Petruzzellis Maria Laura, Pensabene Buemi Luciano, Fratini Emiliano, Baglioni Piero

机构信息

Department of Chemistry "Ugo Schiff" and CSGI, University of Florence, Via della Lastruccia 3, 50019 Sesto Fiorentino, (FI), Italy.

The Procter & Gamble Company, 1853 Strombeek-Bever, Brussels, Belgium.

出版信息

J Colloid Interface Sci. 2023 May 15;638:363-374. doi: 10.1016/j.jcis.2023.01.119. Epub 2023 Feb 1.

Abstract

HYPOTHESIS

Organic solvents are often used for cleaning highly water-sensitive artifacts in modern/contemporary art. Due to the toxicity of most solvents, confining systems must be formulated to use these fluids in a safe and controlled way. We propose here castor oil (CO) organogels, obtained thorough cost-effective sustainable polyurethane crosslinking. This methodology is complementary to previously demonstrated hydrogels, when conservators opt for organic solvents over aqueous formulations.

EXPERIMENTS

The gels were characterized via Small-angle Neutron Scattering and rheology before and after swelling in two organic solvents commonly adopted in cleaning paintings. The removal of a photo-aged acrylic-ketonic varnish was evaluated under visible and ultraviolet light, and with FTIR 2D imaging.

FINDINGS

The new gels are dry systems that can be easily stored and loaded with solvents before use. Their nanoscale organization, viscoelasticity and cleaning action are controlled changing the amount of crosslinking, the polymeric backbone, and the loaded solvents. The fluids are confined in the nanosized polymeric mesh of the gels, which are highly retentive, granting controlled release over delicate paint layers, and transparent, allowing monitoring of the cleaning process. These features, along with their sustainable synthesis, candidate the CO organogels as feasible solutions for cultural heritage preservation, expanding the palette of advanced tools for conservators over traditional thickeners.

摘要

假设

在现代/当代艺术中,有机溶剂常用于清洁对水高度敏感的文物。由于大多数溶剂具有毒性,必须设计封闭系统以安全、可控的方式使用这些液体。我们在此提出通过具有成本效益的可持续聚氨酯交联获得的蓖麻油(CO)有机凝胶。当文物保护者选择有机溶剂而非水性配方时,这种方法可作为对先前已证明的水凝胶的补充。

实验

在两种常用于绘画清洁的有机溶剂中溶胀前后,通过小角中子散射和流变学对凝胶进行表征。在可见光和紫外光下以及使用傅里叶变换红外光谱二维成像评估去除光老化丙烯酸酮清漆的效果。

研究结果

新型凝胶是干燥系统,在使用前可轻松储存并加载溶剂。通过改变交联量、聚合物主链和加载的溶剂,可以控制它们的纳米级结构、粘弹性和清洁作用。液体被限制在凝胶的纳米级聚合物网中,这种网具有高保留性,可在 delicate 漆层上实现可控释放,并且是透明的,便于监测清洁过程。这些特性以及它们的可持续合成,使 CO 有机凝胶成为文化遗产保护的可行解决方案,为文物保护者提供了比传统增稠剂更多的先进工具。

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