sunho.lee@skku.edu | |
Education | B.S. (2019) Sungkyunkwan University |
Research | High efficiency perovskite solar cells |
[6] C. Ma, F. T. Eickmeyer, S.-H. Lee, D.-H. Kang, S.-. Kwon, M. Gratzel, N.-G. Park, Unveiling facet-dependent degradation and facet engineering for stable perovskite solar cells, Science 2022, 379(6628), 173-178.
[5] C. Ma, M.-C. Kang, S.-H. Lee, S.-J. Kwon, H.-W. Cha, C.-W. Yang, N.-G. Park, Photovoltaically top-performing perovskite crystal facets, Joule 2022, 6(11), 2626-2643.
[4] S.-G. Kim, S.-H. Lee, I. S. Yang, Y.-J. Park, K. Park, J.-W. Lee, N.-G. Park, Effect of Fluorine Substitution in a Hole Dopant on the Photovoltaic Performance of Perovskite Solar Cells, ACS Energy Lett. 2022, 7, 741-748
[3] S.-Y. Kim, J.-M. Yang, S.-H. Lee, N.-G. Park, A layered (n-C4H9NH3)2CsAgBiBr7 perovskite for bipolar resistive switching memory with a high ON/OFF ratio, Nanoscale 2021, 13, 12475-12483.
[2] S.-H. Lee, S. Jeong, S. Seo, H. Shin, C. Ma, N.-G. Park, Acid dissociation constant: A criterion for selecting passivation agents in perovskite solar cells, ACS Energy Lett. 2021, 6, 1612-1621.
[1] Y. Zhang, S. Seo, S.-Y. Lim, Y. Kim, S.-G. Kim, D.-K. Lee, S.-H. Lee, H. Shin, H. Cheong, N.-G. Park, Achieving reproducible and high-efficiency (>21%) perovskite solar cells with a presynthesized FAPbI3 powder, ACS Energy Lett. 2019, 5, 2, 360-366.