English

Charge transfer at organic-inorganic interfaces

Materials Science 2016-09-22 v1

Abstract

We studied the electron transfer from excitons in adsorbed indoline dye layers across the organic-inorganic interface. The hybrids consist of indoline derivatives on the one hand and different inorganic substrates (TiO2_2, ZnO, SiO2_2(0001), fused silica) on the other. We reveal the electron transfer times from excitons in dye layers to the organic-inorganic interface by analyzing the photoluminescence transients of the dye layers after femtosecond excitation and applying kinetic model calculations. A correlation between the transfer times and four parameters have been found:(i) the number of anchoring groups, (ii) the distance between the dye and the organic-inorganic interface, which was varied by the alkyl-chain lengths between the carboxylate anchoring group and the dye, (iii) the thickness of the adsorbed dye layer, and (iv) the level alignment between the excited dye (π\pi*-level) and the conduction band minimum of the inorganic semiconductor.

Keywords

Cite

@article{arxiv.1609.06593,
  title  = {Charge transfer at organic-inorganic interfaces},
  author = {Ingo Meyenburg and Jane Falgenhauer and Nils W. Rosemann and Sangam Chatterjee and Derck Schlettwein and Wolfram Heimbrodt},
  journal= {arXiv preprint arXiv:1609.06593},
  year   = {2016}
}

Comments

8 pages, 7 figures

R2 v1 2026-06-22T15:56:43.221Z