[1] Fang, CD., Huang, Y., Sun, YF., Sun PF., Li K., Yao, SY., Zhang, MY., Fang, WH. and Chen, JJ., Revealing and reconstructing the 3D Li-ion transportation network for superionic poly(ethylene) oxide conductor. Nat Commun 2024, 15, 6781. [LINK]
[2] Du, M., Zhang, L., Meng, Y., Chen, J., and Liu, F. Impact of Surface Chemistry on Emulsion–Electrode Interactions and Electron-Transfer Kinetics in the Single-Entity Electrochemistry. Analytical Chemistry 2024, 96, 1038-1045.[LINK]
[3] Yang, L., Zhang, S., Li, K., Wu, H., Wu, T., Wu, D., and Chen, J. Tuning the inner- and outer-sphere electron transfer behavior of aqueous {CoW12} polyoxometalate clusters for redox flow batteries exceeding 1.5V. Energy Storage Materials 2024, 65, 103149.[LINK]
[4] Qian, M., Tang, Y., Liu, L., Zhang, Y., Li, X., and Chen, J. Li2ZnTi3O8 as the host-separator modifier with efficient polysulfides trapping and fast Li+ diffusion for lithium-sulfur batteries. Nano Research 2024.[LINK]
[5] Fang, C., Zhang, Y., Li, Y., Sun, P., Cui, L., and Chen, J. Ion-dipole interactions assist small molecular additives to regulate Li+ coordination of poly(ethylene) oxide-based polymer electrolyte. Electrochimica Acta 2024, 481, 143949.[LINK]
[6] Lan, J., Wu, H., Yang, L., and Chen, J. The design engineering of nanocatalysts for high power redox flow batteries. Nanoscale 2024, 16, 10566-10577.[LINK]