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首页> 外文期刊>Journal of Colloid and Interface Science >Synthesis, characterization and DFT-modeling of novel agents for the protection and restoration of historical calcareous stone substrates
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Synthesis, characterization and DFT-modeling of novel agents for the protection and restoration of historical calcareous stone substrates

机译:用于保护和修复历史钙质石材基质的新型试剂的合成,表征和DFT模拟

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摘要

The ammonium salts of oxamate (AmOxam) and monomethyloxalate (AmMeox), structurally related to ammonium oxalate (AmOx), were synthesized and characterized as protecting agents/filler for calcareous stone substrates. Both compounds featured an improved solubility in water and alcoholic-water mixtures with respect to AmOx. While AmOxam is stable in aqueous solution and reacts with calcite to afford the corresponding insoluble calcium oxamate (CaOxam), AmMeox spontaneously undergoes hydrolysis to give ammonium monohydrogen oxalate hemihydrate (AmBiox) and calcium oxalate (Ca0x). Both compounds have been tested for the restoration of naturally weathered marble and biomicritic limestone. The formation of a superficial layer of CaOxam and CaOx was observed on stone samples treated with AmOxam and AmMeox, respectively, depending on the solvent mixture. A quantum-mechanical study was carried out at DFT level in order to investigate the nature of the interactions occurring between the lithic substrate (calcite) and the passivating agents, showing how the structural modifications on oxalic acid derivatives can be exploited to fine-tune their interaction with the calcite surface. (C) 2015 Elsevier Inc. All rights reserved.
机译:合成了草酸铵(AmOxam)和草酸单甲酯(AmMeox)在结构上与草酸铵(AmOx)有关的铵盐,并对其作了石灰性石灰石基材保护剂/填料的表征。相对于AmOx,这两种化合物在水和酒精-水混合物中的溶解度均得到改善。 AmOxam在水溶液中稳定并与方解石反应生成相应的不溶性草酸钙(CaOxam),而AmMeox自发水解产生草酸单氢铵半水合物(AmBiox)和草酸钙(Ca0x)。两种化合物都经过测试可恢复自然风化的大理石和生物微生物石灰石。根据溶剂混合物的不同,分别在用AmOxam和AmMeox处理的石材样品上观察到CaOxam和CaOx的表层形成。为了研究石质底物(方解石)与钝化剂之间发生的相互作用的性质,在DFT级别上进行了量子力学研究,显示了如何利用草酸衍生物的结构修饰来微调它们的结构。与方解石表面的相互作用。 (C)2015 Elsevier Inc.保留所有权利。

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