Michael Ray, Yves C. Martin
Proceedings of SPIE - The International Society for Optical Engineering
Structural distortions within the extensive family of organic/inorganic hybrid tin iodide perovskite semiconductors are correlated with their experimental exciton energies and calculated band gaps. The extent of the in- and out-of-plane angular distortion of the Snl42- perovskite sheets is largely determined by the relative charge density and steric requirements of the organic cations. Variation of the in-plane Sn-I-Sn bond angle was demonstrated to have the greatest impact on the tuning of the band gap, and the equatorial Sn-I bond distances have a significant secondary influence. Extended Hückel tight-binding band calculations are employed to decipher the crystal orbital origins of the structural effects that fine-tune the band structure. The calculations suggest that it may be possible to tune the band gap by as much as 1 eV using the templating influence of the organic cation. © 2005 American Chemical Society.
Michael Ray, Yves C. Martin
Proceedings of SPIE - The International Society for Optical Engineering
J.H. Kaufman, Owen R. Melroy, et al.
Synthetic Metals
Frank Stem
C R C Critical Reviews in Solid State Sciences
R.W. Gammon, E. Courtens, et al.
Physical Review B