Del Vitto Annalisa, Pacchioni Gianfranco, Lim Kok Hwa, Rösch Notker, Antonietti Jean-Marie, Michalski Marcin, Heiz Ulrich, Jones Harold
Dipartimento di Scienza dei Materiali, Universita di Milano-Bicocca, via R. Cozzi 53, I-20125 Milano, Italy.
J Phys Chem B. 2005 Oct 27;109(42):19876-84. doi: 10.1021/jp054794l.
We report on the optical absorption spectra of gold atoms and dimers deposited on amorphous silica in size-selected fashion. Experimental spectra were obtained by cavity ringdown spectroscopy. Issues on soft-landing, fragmentation, and thermal diffusion are discussed on the basis of the experimental results. In parallel, cluster and periodic supercell density functional theory (DFT) calculations were performed to model atoms and dimers trapped on various defect sites of amorphous silica. Optically allowed electronic transitions were calculated, and comparisons with the experimental spectra show that silicon dangling bonds [[triple bond]Si(.-)], nonbridging oxygen [[triple bond]Si-O(.-)], and the silanolate group [[triple bond]Si-O(-)] act as trapping centers for the gold particles. The results are not only important for understanding the chemical bonding of atoms and clusters on oxide surfaces, but they will also be of fundamental interest for photochemical studies of size-selected clusters on surfaces.
我们报道了以尺寸选择方式沉积在非晶态二氧化硅上的金原子和二聚体的光吸收光谱。实验光谱通过腔衰荡光谱法获得。基于实验结果讨论了软着陆、碎片化和热扩散等问题。同时,进行了团簇和周期性超胞密度泛函理论(DFT)计算,以模拟被困在非晶态二氧化硅各种缺陷位点上的原子和二聚体。计算了光学允许的电子跃迁,与实验光谱的比较表明,硅悬键[[三键]Si(·)]、非桥连氧[[三键]Si - O(·)]和硅醇盐基团[[三键]Si - O(-)]充当金颗粒的捕获中心。这些结果不仅对于理解原子和团簇在氧化物表面的化学键合很重要,而且对于表面尺寸选择团簇的光化学研究也具有根本意义。