Materials Research and Technology Institute, The University of Texas at El Paso, El Paso, TX 79912, USA.
Bioinorg Chem Appl. 2012;2012:672562. doi: 10.1155/2012/672562. Epub 2012 Nov 1.
The interaction of thioindigo and the phyllosilicate clay sepiolite is investigated using density functional theory (DFT) and molecular orbital theory (MO). The best fit to experimental UV/Vis spectra occurs when a single thioindigo molecule attaches via Van der Waals forces to a tetrahedrally coordinated Al(3+) cation with an additional nearby tetrahedrally coordinated Al(3+) also present. The thioindigo molecule distorts from its planar structure, a behavior consistent with a color change. Due to the weak interaction between thioindigo and sepiolite we conclude that the thioindigo molecule must be trapped in a channel, an observation consistent with previous experimental studies. Future computational studies will look at the interaction of indigo with sepiolite.
使用密度泛函理论(DFT)和分子轨道理论(MO)研究了硫靛和层状硅酸盐粘土海泡石的相互作用。当单个硫靛分子通过范德华力附着在具有附加附近的四面体配位的 Al(3+)阳离子上时,与实验的 UV/Vis 光谱的最佳拟合发生。当存在具有附加附近的四面体配位的 Al(3+)阳离子时,硫靛分子从其平面结构扭曲,这种行为与颜色变化一致。由于硫靛和海泡石之间的相互作用较弱,我们得出结论,硫靛分子必须被困在通道中,这一观察结果与先前的实验研究一致。未来的计算研究将研究靛蓝与海泡石的相互作用。