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含多面体低聚倍半硅氧烷的有机-无机杂化化合物,用于保护石质遗产。

Organic-inorganic hybrid compounds containing polyhedral oligomeric silsesquioxane for conservation of stone heritage.

机构信息

Department of Chemistry, Sejong University, Gwangjin, Seoul, Korea.

出版信息

ACS Appl Mater Interfaces. 2009 Feb;1(2):393-401. doi: 10.1021/am800105t.

Abstract

Alkoxysilane solutions based on tetraethoxysilane (TEOS) have been widely used for the consolidation of decaying heritage stone surfaces. TEOS-based products polymerize within the porous structure of the decaying stone, significantly increasing the cohesion of the grains of stone components. However, they suffer from practical drawbacks, such as crack formation of the gel during the drying phase due to the developing capillary force and dense gel fractures left inside of the stone. In this study, a TEOS-based stone consolidant containing functional (3-glycidoxypropyl)trimethoxysilane (GPTMS) and polyhedral oligomeric silsesquioxane (POSS) has been prepared in order to reduce gel crack formation during the drying phase. The addition of nanometer-sized POSS and/or GPTMS having a flexible segment reduces the capillary force developed during solvent evaporation. The properties of the TEOS/GPTMS/POSS composite solutions were compared with those of commercial products (Wacker OH and Unil sandsteinfestiger OH 1:1). The gelation time was similar to that of commercial consolidants, and the TEOS/GPTMS/POSS solution was stable over a period of up to 6 months. The addition of POSS and GPTMS provided a crack-free gel, while the gel from the commercial consolidants exhibited cracks after drying. The surface hydrophobicity of the treated decayed granite increased with the addition of POSS and GPTMS, and it was higher than that of the commercial product, implying the possibility of POSS and GPTMS as barriers to the penetration of water. This result implies that the TEOS/GPTMS/POSS solution showed a high suitability for the consolidation of granite heritage.

摘要

基于四乙氧基硅烷 (TEOS) 的烷氧基硅烷溶液已广泛用于衰变文物石材的加固。TEOS 基产品在衰变石材的多孔结构内聚合,显著提高了石材成分颗粒的内聚力。然而,它们存在实际缺陷,例如由于毛细力的发展,凝胶在干燥阶段会形成裂纹,以及致密的凝胶裂缝留在石材内部。在这项研究中,制备了一种基于 TEOS 的石材加固剂,其中含有功能性 (3-缩水甘油丙基)三甲氧基硅烷 (GPTMS) 和多面体低聚倍半硅氧烷 (POSS),以减少凝胶在干燥阶段的形成。添加纳米级 POSS 和/或具有柔性段的 GPTMS 可降低溶剂蒸发过程中产生的毛细力。TEOS/GPTMS/POSS 复合溶液的性能与商业产品(Wacker OH 和 Unil sandsteinfestiger OH 1:1)进行了比较。凝胶时间与商业加固剂相似,TEOS/GPTMS/POSS 溶液在长达 6 个月的时间内保持稳定。添加 POSS 和 GPTMS 可提供无裂纹的凝胶,而商业加固剂的凝胶在干燥后会出现裂纹。处理后的衰变花岗岩的表面疏水性随 POSS 和 GPTMS 的添加而增加,且高于商业产品,这意味着 POSS 和 GPTMS 具有作为水渗透屏障的可能性。这一结果表明,TEOS/GPTMS/POSS 溶液非常适合衰变花岗岩的加固。

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