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一种作为长效保湿水凝胶-弹性体的双层材料的设计及其在三星堆遗址出土象牙的现场保护中的应用。

Design of a double-layered material as a long-acting moisturizing hydrogel-elastomer and its application in the field protection of elephant ivories excavated from the Sanxingdui Ruins.

作者信息

Jiang Lang, Xiang Shilin, Ji Xiaoying, Lei Jinshan, Li Dongliang, Li Sifan, Xiao Lin, Jiang Luman, Zhao Lijuan, Wang Yi

机构信息

College of Chemistry and Materials Science, Sichuan Normal University Chengdu 610068 China

Cigar Fermentation Technology Key Laboratory of China Tobacco, Industrial Efficient Utilization of Domestic Cigar Tobacco Key Laboratory of Sichuan Province, China Tobacco Sichuan Industrial Co., Ltd Chengdu 610066 China.

出版信息

RSC Adv. 2024 Aug 8;14(34):24845-24855. doi: 10.1039/d4ra03919j. eCollection 2024 Aug 5.

Abstract

The sudden change in the environment from a dark, low-oxygen, low-temperature, high-humidity underground stable environment to an environment with much-improved temperature and humidity, a high oxygen content, enhanced light exposure, and increased harmful organisms has greatly affected the stability of the ivory unearthed from the Sanxingdui site. Therefore, the implementation of an effective emergency protection strategy for ivory excavated at Sanxingdui is imperative and urgently needed. However, the current gauze technique used at many archaeological sites suffers from short timescales, poor transparency of the material, and susceptibility to reverse osmosis of the ivory. Therefore, in this study, a transparent poly(acrylamide-acrylic acid) (P(AM-AA)) hydrogel-poly(dimethylsiloxane) (PDMS) elastomer bilayer was designed for the effective protection of excavated ivory. In this system, a hydrophobic PDMS elastomer was constructed on the surface of the hydrogel by the introduction of a silane coupling agent to inhibit the loss of water from the hydrogel to the external environment, thus prolonging the preservation of ivory by the protective material. The covalent interface between the hydrogel and the elastomer allowed the double-layer composite to exhibit excellent interfacial bonding. In addition, the double-layer material demonstrated a high mechanical strength of 1.2 MPa and a water binding ratio of ∼31%, which allowed it to form strong hydrogen bonds with the silanol structure. When the hydrogel was placed in an air environment (temperature: 25 °C; relative humidity: 65% RH), the water-retention rate of the double-layer material was still more than 60% after 5 days, thus the double-layer material showed excellent performance. Meanwhile, the double-layer material had a transmittance of more than 90% and exhibited a high degree of transparency, which makes it possible to promptly observe the changes occurring on the surface of the ivory. The combination of the aforementioned properties makes the bilayer a promising material for moisturizing and protecting excavated ivory . Based on these properties, we used the prepared P(AM-AA)/PDMS double-layer material directly for wrapping the K8 ivory with the highest water content at Sanxingdui. The weight retention rate of the ivory was around 70% after 50 days of placement (temperature: 25 °C; relative humidity: 60% RH), the macroscopic morphology did not change significantly and the mechanical properties of the wrapped ivory were basically unchanged, which indicated that the double-layer material has an excellent on-site protection effect on the ivory excavated from Sanxingdui. This work provides new ideas and methods for the temporary conservation of wet heritage.

摘要

环境从黑暗、低氧、低温、高湿的地下稳定环境突然转变为温度和湿度大幅改善、氧气含量高、光照增强且有害生物增多的环境,这极大地影响了三星堆遗址出土象牙的稳定性。因此,对三星堆出土象牙实施有效的应急保护策略势在必行且迫在眉睫。然而,目前许多考古遗址使用的纱布技术存在时间尺度短、材料透明度差以及象牙易发生反渗透等问题。因此,在本研究中,设计了一种透明的聚(丙烯酰胺 - 丙烯酸)(P(AM - AA))水凝胶 - 聚二甲基硅氧烷(PDMS)弹性体双层材料,用于有效保护出土象牙。在该体系中,通过引入硅烷偶联剂在水凝胶表面构建疏水的PDMS弹性体,以抑制水凝胶向外部环境的水分流失,从而延长保护材料对象牙的保存时间。水凝胶与弹性体之间的共价界面使双层复合材料表现出优异的界面结合性能。此外,双层材料表现出1.2 MPa的高机械强度和约31%的水结合率,使其能够与硅醇结构形成强氢键。当水凝胶置于空气环境(温度:25°C;相对湿度:65%RH)中时,5天后双层材料的保水率仍超过60%,因此双层材料表现出优异的性能。同时,双层材料的透光率超过90%,具有高度的透明度,这使得能够及时观察象牙表面发生的变化。上述性能的结合使双层材料成为一种有前景的出土象牙保湿保护材料。基于这些性能,我们直接使用制备的P(AM - AA)/PDMS双层材料包裹三星堆含水量最高的K8象牙。放置50天后(温度:25°C;相对湿度:60%RH),象牙的重量保留率约为70%,宏观形态没有明显变化,包裹后象牙的力学性能基本不变,这表明双层材料对三星堆出土象牙具有优异的现场保护效果。这项工作为湿遗产的临时保护提供了新的思路和方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7e2/11307256/03d2f32dee60/d4ra03919j-f1.jpg

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