The Influence of Laser Induced Consolidation on the Ablation Threshold of Nanoparticulate ITO-layers
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference7 articles.
1. Baum, M., Kim, H., Alexeev, I., Piqué, A., Schmidt, M., 2013. Generation of transparent conductive electrodes by laser consolidation of LIFT printed ITO nanoparticle layers, Applied Physics A, 799f.
2. Baum, M., Polster, S., Jank, M.P.M., Alexeev, I., Frey, L., Schmidt, M., 2012. Efficient laser induced consolidation of nanoparticulate ZnO thin films with reduced thermal budget, Applied Physics A, 269ff.
3. Baum, M., Alexeev, I., Latzel, M., Christiansen, S.H., Schmidt, M., 2013. Determination of the effective refractive index of nanoparticulate ITO layers. Optics Express, 22754ff.
4. Mahajeri, M., Schneider, A., Baum, M., Rechtenwald, T., Voigt, M., Schmidt, M., Peukert, W., 2012. Production of dispersions with small particle size from commercial indium tin oxide powder for the deposition of highly conductive and transparent films, Thin Solid Films 520, 5741.
5. Park, M., Chon, B.H., Kim, H.S., Jeoung, S.C., Kim, D., Lee, J., Chu, H.Y., Kim, H.R., 2006. Ultrafast laser ablation of indium tin oxide thin films for organic light-emitting diode application, Optics and Lasers in Engineering 44, 138-146.
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