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Direct evidence of an unanticipated crystalline phase responsible for the high performance of few-layered-MoS<sub>2</sub> anodes for Na-ion batteries
Kulka, A., Hanc, A., Walczak, K., Płotek, J., Sun, J., Lu, L., … Huthwelker, T. (2022). Direct evidence of an unanticipated crystalline phase responsible for the high performance of few-layered-MoS2 anodes for Na-ion batteries. Energy Storage Materials, 48, 314-324. https://doi.org/10.1016/j.ensm.2022.03.031
Rational design of a heterogeneous double-layered composite solid electrolyte via synergistic strategies of asymmetric polymer matrices and functional additives to enable 4.5 V all-solid-state lithium batteries with superior performance
Li, L., Wang, J., Zhang, L., Duan, H., Deng, Y., & Chen, G. (2022). Rational design of a heterogeneous double-layered composite solid electrolyte via synergistic strategies of asymmetric polymer matrices and functional additives to enable 4.5 V all-solid-state lithium batteries with superior performance. Energy Storage Materials, 45, 1062-1073. https://doi.org/10.1016/j.ensm.2021.10.047
Evidence for stepwise formation of solid electrolyte interphase in a Li-ion battery
Surace, Y., Leanza, D., Mirolo, M., Kondracki, Ł., Vaz, C. A. F., El Kazzi, M., … Trabesinger, S. (2022). Evidence for stepwise formation of solid electrolyte interphase in a Li-ion battery. Energy Storage Materials, 44, 156-167. https://doi.org/10.1016/j.ensm.2021.10.013
Unraveling gas evolution in sodium batteries by online electrochemical mass spectrometry
Zhang, L., Tsolakidou, C., Mariyappan, S., Tarascon, J. M., & Trabesinger, S. (2021). Unraveling gas evolution in sodium batteries by online electrochemical mass spectrometry. Energy Storage Materials, 42, 12-21. https://doi.org/10.1016/j.ensm.2021.07.005
Multifunctional electrolyte additive for improved interfacial stability in Ni-rich layered oxide full-cells
Pham, H. Q., Mirolo, M., Tarik, M., El Kazzi, M., & Trabesinger, S. (2020). Multifunctional electrolyte additive for improved interfacial stability in Ni-rich layered oxide full-cells. Energy Storage Materials, 33, 216-229. https://doi.org/10.1016/j.ensm.2020.08.026
Influence of aqueous electrolyte concentration on parasitic reactions in high-voltage electrochemical capacitors
He, M., Fic, K., Frąckowiak, E., Novák, P., & Berg, E. J. (2016). Influence of aqueous electrolyte concentration on parasitic reactions in high-voltage electrochemical capacitors. Energy Storage Materials, 5, 111-115. https://doi.org/10.1016/j.ensm.2016.06.001