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2024 | OriginalPaper | Buchkapitel

4. Advanced Characterization Techniques for Li-S Batteries

verfasst von : Ayesha Tariq, Muhammad Sagir, Lubna Jahangeer, Shahzad Murtaza, M. B. Tahir

Erschienen in: Lithium-Sulfur Batteries: Key Parameters, Recent Advances, Challenges and Applications

Verlag: Springer Nature Singapore

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Abstract

Since the creation of their first prototype in the 1960s, lithium-sulfur (Li-S) batteries have been anticipated to be a viable high-energy-density secondary battery system. By addressing the issues at the lab-level model systems, significant progress has been made over the past 10 years in promoting the performance of Li-S batteries. Li-S battery applications are receiving more attention; however, the bottleneck is being caused by brand-new difficulties at realistic cell sizes. In this review, we first introduce the lithium-sulfur batteries and describe their principle. Then, we elaborate all the recent advances and finally concluded along with future research objectives.

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Literatur
Zurück zum Zitat Gu M, Parent LR, Mehdi BL, Unocic RR, McDowell MT, Sacci RL, . . . Wang C-M (2013) Demonstration of an electrochemical liquid cell for operando transmission electron microscopy observation of the lithiation/delithiation behavior of Si nanowire battery anodes. Nano Lett 13(12):6106–6112. https://doi.org/10.1021/nl403402q Gu M, Parent LR, Mehdi BL, Unocic RR, McDowell MT, Sacci RL, . . . Wang C-M (2013) Demonstration of an electrochemical liquid cell for operando transmission electron microscopy observation of the lithiation/delithiation behavior of Si nanowire battery anodes. Nano Lett 13(12):6106–6112. https://​doi.​org/​10.​1021/​nl403402q
Zurück zum Zitat Koerver R, Aygün I, Leichtweiß T, Dietrich C, Zhang W, Binder JO, . . . Janek J (2017) Capacity fade in solid-state batteries: interphase formation and chemomechanical processes in nickel-rich layered oxide cathodes and lithium thiophosphate solid electrolytes. Chem Mater 29(13):5574–5582. https://doi.org/10.1021/acs.chemmater.7b00931 Koerver R, Aygün I, Leichtweiß T, Dietrich C, Zhang W, Binder JO, . . . Janek J (2017) Capacity fade in solid-state batteries: interphase formation and chemomechanical processes in nickel-rich layered oxide cathodes and lithium thiophosphate solid electrolytes. Chem Mater 29(13):5574–5582. https://​doi.​org/​10.​1021/​acs.​chemmater.​7b00931
Zurück zum Zitat Wei Seh Z, Li W, Cha JJ, Zheng G, Yang Y, McDowell MT, . . . Cui Y (2013) Sulphur–TiO2 yolk–shell nanoarchitecture with internal void space for long-cycle lithium–sulphur batteries. Nat Commun 4(1):1331. https://doi.org/10.1038/ncomms2327 Wei Seh Z, Li W, Cha JJ, Zheng G, Yang Y, McDowell MT, . . . Cui Y (2013) Sulphur–TiO2 yolk–shell nanoarchitecture with internal void space for long-cycle lithium–sulphur batteries. Nat Commun 4(1):1331. https://​doi.​org/​10.​1038/​ncomms2327
Zurück zum Zitat Yao H, Zheng G, Hsu P-C, Kong D, Cha JJ, Li W, . . . Cui Y (2014) Improving lithium–sulphur batteries through spatial control of sulphur species deposition on a hybrid electrode surface. Nat Commun 5(1):3943. https://doi.org/10.1038/ncomms4943 Yao H, Zheng G, Hsu P-C, Kong D, Cha JJ, Li W, . . . Cui Y (2014) Improving lithium–sulphur batteries through spatial control of sulphur species deposition on a hybrid electrode surface. Nat Commun 5(1):3943. https://​doi.​org/​10.​1038/​ncomms4943
Zurück zum Zitat Yin W, Grimaud A, Rousse G, Abakumov AM, Senyshyn A, Zhang L, . . . Tarascon J-M (2020) Structural evolution at the oxidative and reductive limits in the first electrochemical cycle of Li1.2Ni0.13Mn0.54Co0.13O2. Nat Commun 11(1):1252. https://doi.org/10.1038/s41467-020-14927-4 Yin W, Grimaud A, Rousse G, Abakumov AM, Senyshyn A, Zhang L, . . . Tarascon J-M (2020) Structural evolution at the oxidative and reductive limits in the first electrochemical cycle of Li1.2Ni0.13Mn0.54Co0.13O2. Nat Commun 11(1):1252. https://​doi.​org/​10.​1038/​s41467-020-14927-4
Metadaten
Titel
Advanced Characterization Techniques for Li-S Batteries
verfasst von
Ayesha Tariq
Muhammad Sagir
Lubna Jahangeer
Shahzad Murtaza
M. B. Tahir
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-2796-8_4