Dr.-Ing. Ning Li


Institute Materials for Electronics and Energy Technology (i-MEET)

Publications (Download BibTeX)

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Li, N., Baran, D., Forberich, K., Machui, F., Ameri, T., Turbiez, M.,... Brabec, C. (2013). Towards 15% energy conversion efficiency: A systematic study of the solution-processed organic tandem solar cells based on commercially available materials. Energy and Environmental Science, 6(12), 3407-3413. https://dx.doi.org/10.1039/c3ee42307g
Stubhan, T., Krantz, J., Li, N., Guo, F., Litzov, I., Steidl, M.,... Brabec, C. (2012). High fill factor polymer solar cells comprising a transparent, low temperature solution processed doped metal oxide/metal nanowire composite electrode. Solar Energy Materials and Solar Cells, 107, 248-251. https://dx.doi.org/10.1016/j.solmat.2012.06.039
Stubhan, T., Li, N., Luechinger, N.A., Halim, S.C., Matt, G., & Brabec, C. (2012). High fill factor polymer solar cells incorporating a low temperature solution processed WO3 hole extraction layer. Advanced Energy Materials, 2(12), 1433-1438. https://dx.doi.org/10.1002/aenm.201200330
Machui, F., Rathgeber, S., Li, N., Ameri, T., & Brabec, C. (2012). Influence of a ternary donor material on the morphology of a P3HT:PCBM blend for organic photovoltaic devices. Journal of Materials Chemistry, 22(31), 15570-15577. https://dx.doi.org/10.1039/c2jm31882b
Li, N., Stubhan, T., Luechinger, N.A., Halim, S.C., Matt, G., Ameri, T., & Brabec, C. (2012). Inverted structure organic photovoltaic devices employing a low temperature solution processed WO 3 anode buffer layer. Organic Electronics, 13(11), 2479-2484. https://dx.doi.org/10.1016/j.orgel.2012.06.045
Stubhan, T., Litzov, I., Li, N., Wang, H., Krantz, J., Machui, F.,... Brabec, C. (2012). Low temperature, solution processed metal oxide buffer layers fulfilling large area production requirements. In Proceedings of SPIE. San Diego, US: International Society for Optical Engineering; 1999.
Wang, H., Li, N., Güldal, N.S., & Brabec, C. (2012). Nanocrystal V2O5 thin film as hole-extraction layer in normal architecture organic solar cells. Organic Electronics, 13(12), 3014-3021. https://dx.doi.org/10.1016/j.orgel.2012.08.007
Ameri, T., Min, J., Li, N., Machui, F., Brabec, C., Forster, M.,... Scherf, U. (2012). Near IR sensitization of polymer/fullerene solar cells. In Proceedings of the Organic Photovoltaics XIII. San Diego, CA, US.
Ameri, T., Min, J., Li, N., Machui, F., Baran, D., Forster, M.,... Brabec, C. (2012). Performance enhancement of the p3ht/pcbm solar cells through nir sensitization using a small-bandgap polymer. Advanced Energy Materials, 2(10), 1198-1202. https://dx.doi.org/10.1002/aenm.201200219
Hoyer, U., Pinna, L., Swonke, T., Auer, R., Brabec, C., Stubhan, T., & Li, N. (2011). Comparison of electroluminescence intensity and photocurrent of polymer based solar cells. Advanced Energy Materials, 1(6), 1097-1100. https://dx.doi.org/10.1002/aenm.201100496

Last updated on 2016-21-09 at 04:22