l 学术论文 1. Zhang, X.#; Wang, X.#; Yao, D.; Guo, M.; Lv, J.; Vongsvivut, J.; Lu, X.*; Shen, W*. Porous N, O, S-Doped Carbon from Feathers Drives pH-Universal H2O2 Electroproduction. Adv. Funct. Mater. 2025, https://doi.org/10.1002/adfm. 202524856. 2. Wang, X. ; Li, Y.; Liu, L.; Lv, J.*; Lu, X.*; Shen, W*. Multiscale Design for Neutral-Electrolyte H2O2 Electrosynthesis: Catalysts, Electrodes, Devices, and Hybrid Processes. Adv. Funct. Mater. 2025, https://doi.org/10.1002/adfm.202511806. 3. Yang, Z.; Wu, P.; Li, F.*; Zhou, C.; Zhao, S.; Bai, S.; Shen, W.*; Liu, L*. Synthesis of Epimino-Bridged Fullerene-Fused Tetrahydroazepines via 1,3-Dipolar Cycloaddition of [60]Fullerene with in Situ Generated Azomethine Ylides. Org. Lett. 2025, 27, 6449-6456 4. Wang, X.#; Shen, W. #, *; Zhang, C.#; Huang, Y.; Zhang, J.*; Lv, J.*; Lu. X*. A Chlorine-Resistant Self-Doped Nanocarbon Catalyst for Boosting Hydrogen Peroxide Synthesis in Seawater. Angew. Chem. Int. Ed., 2025. 64, e202419049. 5. Huang, Y.#; Zhang, C.#; Wang, X.#; Wu, Y.; Lv, J.; Zhang, J.; Shen, W. *; Lu. X*. Synergistic Single-Atom and Clustered Cobalt Sites on N/S Co-Doped Defect Nano-carbon for Efficient H2O2 Electrosynthesis. Nano-Micro Lett., 2025. 17, 142. 6. Wang, F.#; Shen, W.#; Shui, Y.#; Chen, J.; Wang, H.; Wang, R.; Qin, Y.; Wang, X.; Wan, J.; Zhang, M.*; Lu, X.*; Yang, T.*; Song. F*. Electrically controlled nonvolatile switching of single-atom magnetism in a Dy@C84 single-molecule transistor. Nat. Commun., 2024, 15, 2450. 7. Shen, W.#; Zhang, C.#; Wang, X.#; Huang, Y.; Du, Z.*; Alomar, M.; Wang, J.; Lv, J.*; Zhang, J.*; Lu. X*. Sulfur-Doped Defective Nanocarbons Derived from Fullerenes as Electrocatalysts for Efficient and Selective H2O2 Electroproduction. ACS Materials Lett. 2024, 6, 17. 8. Zhang, C.; Shen, W.*; Guo, K.*; Xiong, M.; Zhang, J.*; Lu. X*. A Pentagonal Defect-Rich Metal-Free Carbon Electrocatalyst for Boosting Acidic O2 Reduction to H2O2 Production. J. Am. Chem. Soc. 2023, 145, 11589. 9. Shen, W.#; Yang, Z.#; Wang, J.; Cui, J.; Bao, Z.; Yu, D.; Guo, M.; Xu, G.*; Lv, J*. Bi-Sn Co-Catalyst-Modified p‑Si Nanowire Array Photocathodes for Photoelectrocatalytic CO2 Reduction to Formate. ACS Sustainable Chem. Eng. 2023, 11, 13451. 10. Shen, W.; Bao, L.; Lu, X*. Endohedral Metallofullerenes: An Ideal Platform of Sub‐Nano Chemistry. Chin. J. Chem. 2022, 40, 275. 11. Xiang, J.#; Shen, W.#; Guo, Z.; Meng, J.; Yuan, L.*; Zhang, Y.; Cheng, Z.; Shen, Y.; Lu, X. *; Huang, Y*. A supramolecular complex of C60-S with high-density active sites as cathode for lithium-sulfur batteries. Angew. Chem. Int. Ed. 2021, 60, 14313-14318. 12. Shen, W.; Bao, L.; Wu, Y.; Pan, C.; Zhao, S.; Fang, H.; Xie, Y.; Jin, P.*; Peng, P.*; Li, F.-F.*; Lu. X*. Lu2@C2n (2n = 82, 84, 86): Crystallographic Evidence of Direct Lu–Lu Bonding between Two Divalent Lutetium Ions Inside Fullerene Cages. J. Am. Chem. Soc. 2017, 139, 9979-9984. l 参编专著: 1. Shen, W., Yu, P., Tian, X., Lu, X. Introduction and Classification of Endohedral Metalfullerenes. In: Lu, X., Akasaka, T., Slanina, Z. (eds) Handbook of Fullerene Science and Technology. 2022, Springer, Singapore. https://doi.org/10.1007/978-981-13-3242-5_25-1. l 发明专利: 1. 一种分级多孔的富勒烯基NSCo共掺杂电催化剂及其制备方法与应用,专利号:CN202410778735.0. 2. 一种富勒烯基Mo2C/C60电催化剂及其制备方法与应用,专利号:CN202510178383.X. 3. 一种鸡毛衍生的自掺杂多孔碳及其制备方法和应用,专利号:CN202510233845.3. 4. 提升光电催化还原CO2选择性和效率的Bi/SiNWs光电阴极材料及其制备方法,专利号:ZL202210795791.6. 5. 一种用于海水光电催化高效析氢的Ni3S2/SiNWs阴极材料及其制备方法,专利号:CN202210854934.6. |