论文著作:
[1] Nan J., You Y., Zha W., Xia L., Ruan, Q.*, & Sun ZM.*(2026) Light-Induced NH4+ Deprotonation Drives NH4+/H+ Hybrid Storage Toward Near-Theoretical Capacity in NH4V4O10 Electrodes[J]. Journal of the American Chemical Society, 148(1): 1347–1355.
[2] Zha W, Ruan, Q.* Yang M, Huang J., Sun L., Sun ZM.*, Tao L.*(2026) Photoinduced Proton‐Cation Cascade Boosting Ion Intercalation Dynamics in Photo‐Assisted Zinc‐Ion Batteries[J]. Angewandte Chemie International Edition, 2026, 65(1): e22461.
[3] Zha, W., Ruan, Q.*, Ma, L., Liu, M., Lin, H., Sun, L., Sun, ZM.*, & Tao, L.* (2024) Highly Stable Photo‐Assisted Zinc‐Ion Batteries via Regulated Photo‐Induced Proton Transfer[J]. Angewandte Chemie International Edition, 136(15): e202400621.
[4] Ma, L., Ruan, Q.*, Zha, W., Kong, L., & Sun, ZM.* (2024). Irradiation Spillover Effect in Photo-Assisted Ion Batteries: Overcoming Size Limits for Solar Utilization. Advanced Energy Materials,14(11): 2303586.
[5] Ruan, Q.*, Xi, X., Yan, B., Kong, L., Jiang, C.*, Tang, J., & Sun, ZM.* (2023). Stored photoelectrons in a faradaic junction for decoupled solar hydrogen production in the dark. Chem,9(7): 1850-1864.
[6] Kong, L., Ruan, Q.*, Qiao, J., Chen, P., Yan, B., He, W., Zhang, W., Jiang, C., Lu, C.*, & Sun, ZM.* (2023). Realizing Unassisted Photo‐Charging of Zinc–Air Batteries by Anisotropic Charge Separation in Photoelectrodes. Advanced Materials,35(46), 2304669.
[7] Ruan, Q., Miao, T., Wang, H., & Tang, J*. (2020). Insight on shallow trap states-introduced photocathodic performance in n-type polymer photocatalysts. Journal of the American Chemical Society,142(6), 2795-2802.
[8] Ruan, Q., Luo, W., Xie, J., Wang, Y., Liu, X., Bai, Z., Carmalt, C. J., & Tang, J.* (2017). A nanojunction polymer photoelectrode for efficient charge transport and separation. Angewandte Chemie International Edition,56(28), 8221-8225.