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Reactivity of Cd-yellow pigments: Role of surface defects

机译:CD-黄色颜料的反应性:表面缺陷的作用

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AbstractThe cadmium yellow paints used in several paintings of the early 1900s are undergoing a process of deterioration the reasons of which are still unclear. Structural defects in CdS, among other possible causes like photo-oxidative reactions, may play a role in the degradation process. Their presence in the pigment surface enhances the reactivity of cadmium sulfide. We present a theoretical study of the interaction between the hexagonal defective (101ˉ0) surface of CdS and O2and H2O molecules to simulate the combined effects of exposure to air and humidity. The geometrical and electronic structures as well as the adsorption energies are determined with the use of a first principles method. All the calculations are performed within the framework of the Density Functional Theory (DFT) in the Generalized Gradient Approximation (GGA-PBE) with the use of ultrasoft pseudopotentials. The nudged elastic band method (NEB) is also considered to evaluate activation barriers and minimum reaction paths in two case studies, namely the dissociation of a water molecule in the presence of a cadmium vacancy and the uptake of one oxygen molecule by the CdS surface containing a sulfur vacancy. This paper highlights the key role that theoretical modelling can play in the application of materials science to art conservation.展开▼
机译:<![cdata [ Abstract 20世纪初的几个绘画中使用的镉黄色涂料正在进行恶化的过程尚不清楚的过程。 CD中的结构缺陷,以及其他可能的原因,如光氧化反应,可能在降解过程中发挥作用。它们在颜料表面的存在增强了硫化镉的反应性。我们提出了对六边形缺陷之间的相互作用的理论研究(10 1 ˉ 0)cds和o 2 和h 2 O分子模拟暴露在空气和湿度的综合影响。通过使用第一原理方法确定几何和电子结构以及吸附能量。在广义梯度近似(GGA-PBE)中的密度函数理论(DFT)的框架内执行所有计算,所述梯度近似(GGA-PBE)的使用使用超细伪能量。还考虑了闪烁的弹性带法(NEB),以评估两个案例研究中的活化屏障和最小反应路径,即水分子在镉空间存在下的解离和通过含CDS表面的Cds表面的吸收硫磺空位。本文突出了理论建模在材料科学应用于艺术保护中的关键作用。

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