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Complex Fluids Confined into Semi-interpenetrated Chemical Hydrogels for the Cleaning of Classic Art: A Rheological and SAXS Study

机译:复杂的液体被限制在半渗透化学水凝胶中,用于清洁经典艺术:流变和萨克斯研究

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The removal of aged varnishes from the surface of easel paintings using the common conservation practice (i.e., by means of organic solvents) often causes pigment leaching, paint loss, and varnish redeposition. Recently, we proposed an innovative cleaning system based on semi-interpenetrated polymer networks (SIPNs), where a covalently cross-linked poly(hydroxyethyl methacrylate), pHEMA, network is interpenetrated by linear chains of poly(vinylpyrrolidone), PVP. This chemical gel, simply loaded with water, was designed to safely remove surface dirt from water-sensitive artifacts. Here, we modified the SIPN to confine complex cleaning fluids, able to remove aged varnishes. These complex fluids are 5-component water-based nanostructured systems, where organic solvents are partially dispersed as nanosized droplets in a continuous aqueous phase, using surfactants. The rheological behavior of the SIPN and the nanostructure of the fluids loaded into the gel were investigated, and the mechanical behavior of the gel was optimized by varying both the cross-linking density and the polymer concentration. Once loaded with the complex fluids, the hydrogels maintained their structural and mechanical features, while the complex fluids showed a decrease in the size of the dispersed solvent droplets. Two challenging case studies have been selected to evaluate the applicability of the SIPN hydrogels loaded with the complex fluids. The first case study concerns the removal of a surface layer composed by an aged brown resinous patina from a wood panel, the second case study concerns the removal of a homogeneous layer of yellowed varnish from a watercolor on paper. The results show that the confinement of complex fluids into gels allowed unprecedented removal of varnishes from artifacts overcoming the limitations of traditional cleaning methods.
机译:使用公共保守实践(即通过有机溶剂)从画架绘画表面中去除老化清漆通常会导致颜料浸出,涂料损失和清漆再沉积。最近,我们提出了一种基于半渗透性聚合物网络(SiPN)的创新清洁系统,其中通过聚(乙烯基吡咯烷酮),PVP的线性链渗透了共价交联的聚(甲基丙烯酸羟基丙烯酸甲酯),PHEMA互连。这种简单地装有水的化学凝胶,设计用于安全地从水敏伪影中去除表面污垢。在这里,我们将SIPN修改为限制复杂的清洁液,能够去除老化清漆。这些复杂的流体是5-组分水基纳米结构系统,其中使用表面活性剂在连续水相中部分分散为纳米液滴的有机溶剂。研究了SiPN的流变行为和装载到凝胶中的流体的纳米结构,通过改变交联密度和聚合物浓度来优化凝胶的力学行为。一旦装载复杂的流体,水凝胶保持其结构和机械特征,而复杂的流体显示出分散的溶剂液滴的尺寸的降低。选择了两个具有挑战性的案例研究以评估载有复杂流体的SiPN水凝胶的适用性。第一种案例研究涉及从木板中去除由老年棕色树脂铜绿的表面层,第二种情况研究涉及从纸上的水彩中去除均匀的瓦朗清漆层。结果表明,复杂流体将复杂流体置于凝胶中允许从伪像克服传统清洁方法的局限性的伪影去除清漆。

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