1. Hu, Z.*, Zou, N.* et al., Wavelength-Encoded NeuromorphicInference Enabled by Microcavity MoS2Photodetector Arrays Nature Communications, 2026 (accepted)
2. Hu, Z.*, Su, R.*, Xu. W.* et al., Designable excitonic effects in van der Waals crystals with exponentially growing thickness Nature Communications, 2025
3. Hu, Z.* et al., Energy Transfer Driven Brightening of MoS2 by Ultrafast Polariton Relaxation in Microcavity MoS2/hBN/WS2 Heterostructures Nature Communications, 2024
4.Hu, Z.#; Li, Q.#; Lei, B.; Wu, J.; Zhou, Q.; Gu, C.; Wen, X.; Wang, J.; Liu, Y.; Li, S.; Zheng, Y.; Lu, J.; He, J.; Wang, L.; Xiong, Q.; Wang, J.*; Chen, W.*, Abnormal Near-Infrared Absorption in 2D Black Phosphorus Induced by Ag Nanoclusters Surface Functionalization. Advanced Materials 2018,30 (43), e1801931. (被选为卷首页)
5.Hu, Z.#; Li, Q.#; Lei, B.; Zhou, Q.; Xiang, D.; Lyu, Z.; Hu, F.; Wang, J.; Ren, Y.; Guo, R.; Goki, E.; Wang, L.; Han, C.; Wang, J.*; Chen, W.*, Water-Catalyzed Oxidation of Few-Layer Black Phosphorous in a Dark Environment. Angewandte Chemie 2017,56 (31), 9131-9135. (被选为热点文章,中文报道:https://www.x-mol.com/news/10434)
6.Hu, Z.#; Wu, Z.#; Han, C.; He, J.; Ni, Z.*; Chen, W.*, Two-Dimensional Transition Metal Dichalcogenides: Interface and Defect Engineering. Chemical Society Reviews 2018,47 (9), 3100-3128. (被选为背封面,引用214次,ESI高被引。中文报道:http://www.x-mol.com/news/12257).
7. Hu, Z.; Hernandez-Martinez, P. L.; Liu, X.; Amara, M. R.; Zhao, W.; Watanabe, K.; Taniguchi, T.; Demir, H. V.; Xiong, Q.*, Trion-Mediated Forster Resonance Energy Transfer and Optical Gating Effect in WS2/hBN/MoSe2 Heterojunction. ACS Nano 2020, DOI: 10.1021/acsnano.0c05447.
8. Hu, Z.#*; Liu, X.#; Hernandez-Martinez, P. L.#; Demir, H. V.; Liu, H.*; Xiong, Q.*,Interfacial Charge and Energy Transfer in van der Waals Heterojunctions. InfoMat 2022, e12290.
9. Hu, Z.#; Niu, T.*#; Guo, R.#; Zhang, J.; Lai, M.; He, J.; Wang, L.; Chen, W.*, Two-Dimensional Black phosphorus: its Fabrication, Functionalization and Applications. Nanoscale 2018,10 (46), 21575-21603.
10. Han, C.#; Hu, Z.#; Gomes, L. C.; Bao, Y.; Carvalho, A.; Tan, S. J. R.; Lei, B.; Xiang, D.; Wu, J.; Qi, D.; Wang, L.; Huo, F.; Huang, W.; Loh, K. P.; Chen, W.*, Surface Functionalization of Black Phosphorus via Potassium toward High-Performance Complementary Devices. Nano Letters 2017,17 (7), 4122-4129.
11. Lei, B.#; Pan, Y.#; Hu, Z.#; Zhang, J.; Xiang, D.; Zheng, Y.; Guo, R.; Han, C.; Wang, L.; Lu, J.; Yang L.*; Chen W.*, Direct Observation of Semiconductor-Metal Phase Transition in Bilayer Tungsten Diselenide Induced by Potassium Surface Functionalization. ACS Nano2018, 12(2), 2070-2077
12. Zhang, J. L.#; Han, C.#; Hu, Z.#; Wang, L.; Liu, L.; Wee, A. T. S.; Chen, W.*, 2D Phosphorene: Epitaxial Growth and Interface Engineering for Electronic Devices. Advanced Materials 2018,30 (47), e1802207.
13. Han, C.#; Hu, Z.#; Carvalho, A.; Guo, N.; Zhang, J.; Hu, F.; Xiang, D.; Wu, J.; Lei, B.; Wang, L.; Zhang C.; H Castro Neto, A.; Chen W.*, Oxygen Induced Strong Mobility Modulation in Few-Layer Black Phosphorus. 2D Materials2017,4 (2), 021007.
14. Lei, B.#; Hu, Z.#; Xiang, D.; Wang, J.; Eda, G.; Han, C.; Chen, W.*, Significantly Enhanced Optoelectronic Performance of Tungsten Diselenide Phototransistor via Surface Functionalization. Nano Research2017,10 (4), 1282-1291.
15. Zheng, Y.#; Hu, Z.#; Han, C.; Guo, R.; Xiang, D.; Lei, B.; Wang, Y.; He, J.; Lai, M.; Chen, W.*, Black Phosphorus Inverter Devices Enabled by In-Situ Aluminum Surface Modification. Nano Research 2018,12 (3), 531-536.
16. Li, S.; Lin, Y. C.; Zhao, W.; Wu, J.; Wang, Z.; Hu, Z.; Shen, Y.; Tang, D. M.; Wang, J.; Zhang, Q.; Zhu, H.; Chu, L.; Zhao, W.; Liu, C.; Sun, Z.; Taniguchi, T.; Osada, M.; Chen, W.; Xu, Q. H.; Wee, A. T. S.; Suenaga, K.; Ding, F.; Eda, G.*, Vapour-Liquid-Solid Growth of Monolayer MoS2 Nanoribbons. Nature Materials 2018, 17 (6), 535-542. (引用117次,ESI高被引)
17. Xiang, D.; Liu, T.; Xu, J.; Tan, J. Y.; Hu, Z.; Lei, B.; Zheng, Y.; Wu, J.; Neto, A. H. C.; Liu, L.; Chen, W.*, Two-Dimensional Multibit Optoelectronic Memory with Broadband Spectrum Distinction. Nature Communications 2018,9 (1), 2966.





