sanguk.lee@skku.edu | |
Education | B.S. (2021) Sungkyunkwan University |
Research | Perovskite neuromorphic computing Metal oxide engineering (ALD) |
[7] K.-Nam Hong‡, S.-U. Lee‡, C. Zhang, S.-H. Cho, N.-G. Park, Effect of the Hammett substituent constant of para-substituted benzoic acid on the perovskite/SnO2 interface passivation in perovskite solar cells, Nanoscale 2024, 16, 14284-14294.
[6] S.-U. Lee, S.-Y. Kim, J.-H. Lee, J. H. Baek, J.-W. Lee, H. W. Jang, N.-G. Park, Artificial Synapse Based on a δ-FAPbI3/Atomic-Layer-Deposited SnO2 Bilayer Memristor, Nano Lett. 2024, 24, 16, 4869-4876.
[5] C. Zhang, Y. Son, H. Kim, S.-H. Lee, X. Liang, G. Fu, S.-U. Lee, D.-A. Park, Q. Jiang, K. Zhu, N.-G. Park, Work function tuning of a weak adhesion homojunction for stable perovskite solar cells, Joule 2024, 8, 1394-1411.
[4] Y.Zhang, T. Yang, S.-U. Lee, S. Liu, K. Zhao, N.-G. Park, Stabilizing α-Phase FAPbI3 Perovskite Induced by an Ordered Solvated Quasi-Crystalline PbI2, ACS Energy Lett. 2023, 9, 1, 159-167.
[3] D.-H. Kang, S.-U. Lee, N.-G. Park Effect of residual chloride in FAPbI3 film on photovoltaic performance and stability of perovskite solar cell. ACS Energy Lett. 2023, 8, 2122-2129.
[2] S.-U. Lee, H. Park, H. Shin, N.-G. Park, Atomic layer deposition of SnO2 using hydrogen peroxide improves efficiency and stability of perovskite solar cell, Nanoscale 2023, 15, 5044-5052.
[1] G. S. Shin, J.-H. Kim, S.-U., Lee, N.-G. Park, Viscosity blending approach for 22.42% efficient perovskite solar cells, Bull. Korean Chem. Soc. 2021, 42, 8, 1112-1120.