Department of Applied Physics, Aalto University School of Science and Technology, P.O. Box 11100, FIN-00076 Aalto, Finland.
J Chem Phys. 2010 Jun 7;132(21):214301. doi: 10.1063/1.3425623.
We have calculated the absorption characteristics of different hybrid systems consisting of Ag, Ag(2), or Ag(3) atomic clusters and poly(methacrylic acid) using the time-dependent density-functional theory. The polymer is found to have an extensive structural-dependency on the spectral patterns of the hybrid systems relative to the bare clusters. The absorption spectrum can be "tuned" to the visible range for hybrid systems with an odd number of electrons per silver cluster, whereas for hybrid systems comprising an even number of electrons per silver cluster, the leading absorption edge can be shifted up to approximately 4.5 eV. The results give theoretical support to the experimental observations on the absorption in the visible range in metal cluster-polymer hybrid structures.
我们使用含时密度泛函理论计算了由 Ag、Ag(2) 或 Ag(3) 原子团簇和聚甲基丙烯酸组成的不同杂化系统的吸收特性。与裸团簇相比,聚合物对杂化系统的光谱模式具有广泛的结构依赖性。对于每个银团簇中具有奇数个电子的杂化系统,吸收光谱可以“调谐”到可见光范围,而对于每个银团簇中具有偶数个电子的杂化系统,主导吸收边可以移动到大约 4.5 eV。这些结果为金属团簇-聚合物杂化结构中可见光吸收的实验观察提供了理论支持。