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Dive into the research topics where Thorsten Buhrmester is active.

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Featured researches published by Thorsten Buhrmester.


Journal of The Electrochemical Society | 2010

LiBOB as Electrolyte Salt or Additive for Lithium-Ion Batteries Based on LiNi0.8Co0.15Al0.05O2 / Graphite

Corina Täubert; Meike Fleischhammer; Margret Wohlfahrt-Mehrens; Ulrich Wietelmann; Thorsten Buhrmester

The potential use of lithium bis(oxalato)borate (LiBOB) as electrolyte salt or additive for lithium-ion batteries has been investigated. The electrochemical performances of LiNi 0.8 Co 0.15 Al 0.05 O 2 (NCA) and graphite in different electrolyte formulations were studied by galvanostatic techniques and cyclic voltammetry. Differential scanning calorimetry (DSC)/thermal gravimetry (TG), coupled with mass spectrometry, was employed in studying the thermal behavior of charged electrodes in the presence of an electrolyte. The addition of 2 wt % LiBOB to the state-of-the-art LiPF 6 electrolytes suffices to form a stable solid electrolyte interface film, thus protecting the graphite from partial exfoliation. The LiBOB graphite cells exhibited a much lower irreversible capacity in the first cycle in comparison with the pure LiPF 6 electrolyte. NCA has a better cycling stability in LiBOB when compared to the LiPF 6 electrolytes. Also, the discharge capacities obtained at different C-rates between C/5 and 5C were superior to those obtained in LiPF 6 if charging at a C/5 rate. NCA/graphite complete cells in LiBOB cycled with coulombic efficiencies comparable to the state-of-the-art LiPF 6 electrolytes. The DSC/TG measurements showed that LiBOB significantly improves the thermal stability of the graphite in the PC-containing electrolytes. LiBOB shifts the oxygen release from the NCA layered structure to much higher temperatures in comparison with the LiPF 6 electrolyte.


Journal of The Electrochemical Society | 2005

Electrochemical and Thermal Comparisons of Li [ Ni0.1Co0.8Mn0.1 ] O 2 Synthesized at Different Temperatures (900, 1000, and 1100°C)

Junwei Jiang; Thorsten Buhrmester; K. W. Eberman; L. J. Krause; J. R. Dahn


Archive | 2008

CRYSTALLINE, COMPLETELY SOLUBLE LITHIUM BIS(OXALATO)BORATE (LiBOB)

Rainer Dietz; Ulrich Wietelmann; Uwe Lischka; Thorsten Buhrmester; Klaus Schade


Archive | 2010

GALVANIC CELL HAVING A LITHIUM METAL OR AN ALLOY COMPRISING A LITHIUM METAL AS ANODE MATERIAL AND AN ELECTROLYTE HAVING LITHIUM...COMPLEX SALT

Ulrich Wietelmann; Thorsten Buhrmester; Ute Emmel; Rebecca Metzger


Journal of The Electrochemical Society | 2005

Electrochemical and thermal comparisons of Li[Ni0.1Co0.8Mn0.1]O2 synthesized at different temperatures (900, 1000, and 1100 degrees C)

J. Jiang; Thorsten Buhrmester; K. W. Eberman; L. J. Krause; J. R. Dahn


Archive | 2010

Galvanic cell having a lithium metal or an alloy comprising a lithium metal as anode material and an electrolyte having lithium bis(oxalato)borate and at least one other lithium complex salt

Ulrich Wietelmann; Thorsten Buhrmester; Ute Emmel; Rebecca Metzger


Archive | 2016

Stabilisierte (teil)lithiierte Graphitmaterialien, Verfahren zu deren Herstellung und Verwendung für Lithiumbatterien

Ulrich Wietelmann; Vera Nickel; Stefan Scherer; Ute Emmel; Thorsten Buhrmester; Steffen Haber; Gerd Krämer


Archive | 2016

Lithiierte Silicium/Kohlenstoff-Kompositmaterialien und Verfahren zu deren Herstellung

Ulrich Wietelmann; Ute Emmel; Gerd Krämer; Christopher Kurth; Stefan Scherer; Thorsten Buhrmester


Archive | 2016

LITHIATED SILICON/CARBON COMPOSITE MATERIALS AND METHOD FOR PRODUCING THE SAME

Ulrich Wietelmann; Ute Emmel; Gerd Krämer; Christopher Kurth; Stefan Scherer; Thorsten Buhrmester


Archive | 2015

Galvanic cells and (partially) lithiated lithium battery anodes with increased capacity, and method for producing synthetic graphite intercalation connections

Ulrich Wietelmann; Vera Nickel; Stefan Scherer; Ute Emmel; Thorsten Buhrmester; Steffen Haber; Gerd Krämer

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Margret Wohlfahrt-Mehrens

Bundesanstalt für Materialforschung und -prüfung

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Margret Wohlfahrt-Mehrens

Bundesanstalt für Materialforschung und -prüfung

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