English

Oxidation effects on graded porous silicon anti-reflection coatings

Materials Science 2012-10-02 v1 Chemical Physics

Abstract

Efficient anti-reflection coatings (ARC) improve the light collection and thereby increase the current output of solar cells. By simple electrochemical etching of the Si wafer, porous silicon (PS) layers with excellent broadband anti-reflection properties can be fabricated. In this work, ageing of graded PS has been studied using Spectroscopic Ellipsometry, Transmission Electron Microscopy and X-ray Photoelectron Spectroscopy. During oxidation of PS elements such as pure Si (Si0^0), Si2_2O (Si+^+), SiO (Si2+^{2+}), Si2_2O3_3 (Si3+^{3+}), and SiO2_2 (Si4+^{4+}) are present. In addition both hydrogen and carbon is introduced to the PS in the form of Si3_3SiH and CO. The oxide grows almost linearly with time when exposed to oxygen, from an average thickness of 0 - 3.8 nm for the surface PS. The oxidation is then correlated to the optical stability of multi-layered PS ARCs. It is found that even after extensive oxidation, the changes in the optical properties of the PS structures are small.

Keywords

Cite

@article{arxiv.1210.0038,
  title  = {Oxidation effects on graded porous silicon anti-reflection coatings},
  author = {Annett Thøgersen and Josefine H. Selj and Erik S. Marstein},
  journal= {arXiv preprint arXiv:1210.0038},
  year   = {2012}
}