1. Deng, S.; Park, H.; Reimann, J.; Peterson, J. M.; Blach, D. D.; Sun, M.-J.; Yan, T.; Sun, D.; Taniguchi, T.; Watanabe, K.;Xu, X.; Kennes, D.; Huang, L. Frozen non-equilibrium dynamics of exciton Mott insulators in moiré superlattices. Nature Materials 2025. DOI: 10.1038/s41563-025-02135-8.
2. Blach, D. D.; Lumsargis-Roth, V. A.; Chuang, C.; Clark, D. E.; Deng, S.; Williams, O. F.; Li, C. W.; Cao, J.; Huang, L. Environment-assisted quantum transport of excitons in perovskite nanocrystal superlattices. Nat Commun 2025, 16 (1), 1270.
3. Zhang, Y.; Chen, X.; Yu, Y.; Huang, Y.; Qiu, M.; Liu, F.; Feng, M.; Gao, C.; Deng, S.; Fu, X. A Femtosecond Electron-Based Versatile Microscopy for Visualizing Carrier Dynamics in Semiconductors Across Spatiotemporal and Energetic Domains. Adv Sci (Weinh) 2024, 11 (31), e2400633.
4. Gong, Y.; Yue, S.; Liang, Y.; Du, W.; Bian, T.; Jiang, C.; Bao, X.; Zhang, S.; Long, M.; Zhou, G.; Yin, J.; Deng, S.; Zhang, Q.; Wu, B.; Liu, X. Boosting exciton mobility approaching Mott-Ioffe-Regel limit in Ruddlesden-Popper perovskites by anchoring the organic cation. Nat Commun 2024, 15 (1), 1893.
5. Zhou, B.; Zhou, J.; Wang, L.; Kang, J. H.; Zhang, A.; Zhou, J.; Zhang, D.; Xu, D.; Hu, B.; Deng, S.; et al. A chemical-dedoping strategy to tailor electron density in molecular-intercalated bulk monolayer MoS2. Nature Synthesis 2023, 3 (1), 67-75.
6. Kumar, S.; Dunn, I.; Deng, S.; Zhu, T.; Zhao, Q.; Williams, O.; Tempelaar, R.; Huang, L.; Exciton annihilation in molecular aggregates suppressed through qu antum interference.Nature Chemistry,2023, 15, 1118-1126.
7. Deng, S.; Shi, E.; Yuan, L.; Jin, L.; Dou, L.; Huang, L., Long-Range Exciton Transport and Slow Annihilation in Two-Dimensional Hybrid Perovskites. Nature Communications, 2020, 11(1), 664. (“2020 Top 50 in physis)
8. Guo, Y.; Shi, E.; Zhu, J.; Shen, P. C.; Wang, J.; Lin, Y.; Mao, Y.; Deng, S.; Li, B.; Park, J. H.; Lu, A. Y.; Zhang, S.; Ji, Q.; Li, Z.; Qiu, C.; Qiu, S.; Li, Q.; Dou, L.; Wu, Y.; Zhang, J.; Palacios, T.; Cao, A.; Kong, J., Soft-Lock Drawing of Super-Aligned Carbon Nanotube Bundles for Nanometer Electrical Contacts. Nature Nanotechnology, 2022, 17:278-284.
9. Deng, S.; Blach, D.; Jin, L.; Huang, L., Imaging Carrier Dynamics and Transport in Hybrid Perovskites with Transient Absorption Microscopy. Advanced Energy Materials, 2020, 1903781.
10. Yuan, L.; Zheng, B.; Kunstmann, J.; Brumme, T.; Kuc, A.; Ma, C.; Deng, S.; Blach, D.; Pan, A.; Huang, L.,Nature Materials,2020,19 (6), 617-623.
11. Deng, S.; Snaider, J. M.; Gao, Y.; Shi, E.; Jin, L.; Schaller, R. D.; Dou, L.; Huang, L., Long-Lived Charge Separation in Two-dimensional Ligand-Perovskite Heterostructures. Journal of Chemical Physics, 2020, 152, 044711. (“Editor’s choice in 2020”)
12. Shi, E.; Deng, S.; Yuan, B.; Gao, Y.; Akriti; Yuan, L.; Davis, C. S.; Zemlyanov, D.; Yu, Y.; Huang, L.; Dou, L., Extrinsic and Dynamic Edge States of Two-Dimensional Lead Halide Perovskites. ACS Nano,2019, 13 (2), 1635-1644.
13. Gao, Y.; Shi, E.; Deng, S.; Shiring, S. B.; Snaider, J. M.; Liang, C.; Yuan, B.; Song, R.; Janke, S. M.; Liebman-Peláez, A.; Yoo, P.; Zeller, M.; Boudouris, B. W.; Liao, P.; Zhu, C.; Blum, V.; Yu, Y.; Savoie, B. M.; Huang, L.; Dou, L., Molecular Engineering of Organic–Inorganic Hybrid Perovskites Quantum Wells. Nature Chemistry, 2019, 11, 1151-1157.
14. Zhang, S.; Kang, L.; Wang, X.; Tong, L.; Yang, L.; Wang, Z.; Qi, K.; Deng, S.; Li, Q.; Bai, X.; Ding, F.; Zhang, J., Arrays of horizontal carbon nanotubes of controlled chirality grown using designed catalysts. Nature, 2017, 543 (7644), 234-238.
15. Kang, L.; Deng, S.; Zhang, S.; Li, Q.; Zhang, J., Selective Growth of Subnanometer Diameter Single-Walled Carbon Nanotube Arrays in Hydrogen-Free CVD. Journal of the American Chemical Society,2016, 138 (39), 12723-12726.
16. Deng, S.; Tang, J.; Kang, L.; Hu, Y.; Yao, F.; Zhao, Q.; Zhang, S.; Liu, K.; Zhang, J., High-Throughput Determination of Statistical Structure Information for Horizontal Carbon Nanotube Arrays by Optical Imaging. Advanced Materials,2016, 28 (10), 2018-23.
17. Wang, J.; Deng, S.; Liu, Z.; Liu, Z., The rare two-dimensional materials with Dirac cones. National Science Review, 2015, 2 (1), 22-39.
18. Deng, S.; Xu, W.; Wang, J.; Ling, X.; Wu, J.; Xie, L.; Kong, J.; Dresselhaus, M. S.; Zhang, J., Direct measurement of the Raman enhancement factor of rhodamine 6G on graphene under resonant excitation. Nano Research,2014, 7 (9), 1271-1279.
19. Ling, X.; Huang, S.; Deng, S.; Mao, N.; Kong, J.; Dresselhaus, M. S.; Zhang, J., Lighting up the Raman signal of molecules in the vicinity of graphene related materials. Accounts of Chemical Research,2015, 48 (7), 1862-70.