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Quantum mechanical model for Maya Blue

机译:Maya Blue的量子力学模型

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This work is about Maya Blue (MB), a pigment developed by Mesoamerican civilizations between the 5th and 16th centuries from an aluminosilicate mineral (palygorskite) and an organic dye (indigo). Two different supramolecular quantum-mechanical models afford explanations for the unusual stability of MB based on the oxidation of the indigo molecule during the heating process and its interaction with palygorskite. A model considering indigo derivatives attached to several aluminates shows the principal features of the experimental visible spectrum of MB within the TD-DFT methodology. Another model of an indigo oxidized species confined within an inorganic supramolecular cavity system, that involves about 170 atoms, was calculated after a large configuration interaction of single excited determinants within the NDOL approximation (Montero-Cabreraet al., J Chem Phys, 2007,127,145102). It allows a correct reproduction and interpretation of the corresponding spectrum. This second methodology provides the most satisfactory results, being able to manage very big molecular systems at a QM level. Structural explanation for the unusual stability of MB is also provided. (c) 2008 Wiley Periodicals, Inc.
机译:这项作品是有关玛雅蓝(MB)的颜料,它是中美洲文明在5世纪至16世纪之间使用铝硅酸盐矿物(坡缕石)和有机染料(靛蓝)开发的颜料。基于靛蓝分子在加热过程中的氧化及其与坡缕石的相互作用,两种不同的超分子量子力学模型为MB的异常稳定性提供了解释。一个考虑了与多种铝酸盐连接的靛蓝衍生物的模型显示了TD-DFT方法中MB的实验可见光谱的主要特征。在NDOL近似内单个激发的行列式的较大构型相互作用之后,计算了一个限制在无机超分子腔系统中的靛蓝氧化物种的模型,该模型涉及约170个原子(Montero-Cabreraet等人,J Chem Phys,2007,127) ,145102)。它允许正确再现和解释相应的光谱。第二种方法提供了最令人满意的结果,能够在QM级别管理非常大的分子系统。还提供了MB异常稳定性的结构说明。 (c)2008 Wiley期刊公司

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