Theory@Elettra Group, Democritos Simulation Center, CNR-IOM Istituto Officina dei Materiali, I-34012 Trieste, Italy.
J Am Chem Soc. 2011 Apr 20;133(15):5893-9. doi: 10.1021/ja1101008. Epub 2011 Mar 28.
Molecular sensitization of the single-crystal ZnO (1010) surface through absorption of the catechol chromophore is investigated by means of density functional approaches. The resulting type II staggered interface is recovered in agreement with experiments, and its origin is traced back to the presence of molecular-related states in the gap of metal-oxide electronic structure. A systematic analysis carried out for further catecholate adsorbates allows us to identify the basic mechanisms that dictate the energy position of the gap states. The peculiar level alignment is demonstrated to be originated from the simultaneous interplay among the specific anchoring group, the backbone conjugation, and the lateral functional groups. The picture derived from our results provides efficient strategies for tuning the lineup between molecular and oxide states in hybrid interfaces with potential impact for ZnO-based optoelectronic applications.
通过吸收儿茶酚发色团,研究了通过密度泛函方法对单晶 ZnO(1010)表面的分子敏化。所得的 II 型交错界面与实验相符,并追溯到金属氧化物电子结构间隙中存在分子相关态。进一步对儿茶酸盐吸附物进行的系统分析使我们能够确定决定间隙态能量位置的基本机制。证明了特殊的能级排列源于特定的锚固基团、主链共轭和侧基功能基团之间的协同作用。我们的结果提供了在具有潜在影响的基于 ZnO 的光电应用的混合界面中调整分子和氧化物态之间排列的有效策略。