Materials with New Design for Improved Lithium Ion Batteries

Publications First Founding Period 2010 - 2013

Thermodynamic assessment of the Li–O system

Keke Chang, Bengt Hallstedt

CALPHAD:
Computer Coupling of Phase Diagrams and Thermochemistry 35 (2011) 160–164
journal homepage: www.elsevier.com/locate/calphad

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Carbon-rich SiOC anodes for lithium-ion batteries: Part I. Influence of material UV-pre-treatment on high power properties

Magdalena Graczyk-Zajac, Liviu Toma, Claudia Fasel, Ralf Riedel

Solid State Ionics; Available online 10 January 2012
http://dx.doi.org/10.1016/j.ssi.2011.12.007

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Carbon-rich SiOC anodes for lithium-ion batteries: Part II. Role of thermal cross-linking

Jan Kaspar; Magdalena Graczyk-Zajac, Ralf Riedel

Solid State Ionics; Volume 225, 4 October 2012, Pages 527–531

Solid State Ionics 18 Proceedings of the 18th International Conference on Solid State Ionics Warsaw, Poland, July 3 -8, 2011

http://dx.doi.org/10.1016/j.ssi.2012.01.026

 

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Thermodynamic Assessment of the Cu-Fe-O System

Alexandra V. Khvan, Olga B. Fabrichnaya, Galina Savinykh, Robert Adam, and Hans J. Seifert

Journal of Phase Equilibria and Diffusion Vol. 32 No. 6 2011
Section I: Basic and Applied Research
JPEDAV (2011) 32:498–511
DOI: 10.1007/s11669-011-9951-5
1547-7037 ASM International

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Thermodynamic an Electrochemical Properties of the Li-Co-O and Li-Ni-O-System

Keke Chang*, Bengt Hallstedt, and Denis Music

Materials Chemistry, RWTH Aachen University, D-52056 Aachen, Germany
Chem. Mater., 2012, 24 (1), pp 97–105
DOI: 10.1021/cm201964r
Publication Date (Web): November 30, 2011
Copyright © 2011 American Chemical Society
http://pubs.acs.org/doi/abs/10.1021/cm201964r

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Thermodynamic description of the LiNiO2–NiO2 pseudo-binary system and extrapolation to the Li(Co,Ni)O2–(Co,Ni)O2 system

Keke Chang, Bengt Hallstedt, Denis Music

CALPHAD: Computer Coupling of Phase Diagrams and Thermochemistry 37 (2012) 100–107. DOI: 10.1016/j.calphad.2012.02.006

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The Mg-C phase equilibria and their thermodynamic basis

H.-L. Chen, R. Schmid-Fetzer

Int. J. Materials Research (Z. Metallkunde), (2012) online-first, dx.doi.org/10.3139/146.110787

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Development of thin film cathodes for lithium-ion batteries in the material system Li-Mn-O by r.f. magnetron sputtering

J. Fischer, C. Adelhelm, T. Bergfeldt, K. Chang, C. Ziebert, H. Leiste, M. Stüber, S. Ulrich, D. Music, B. Hallstedt, H.J. Seifert

Thin solid films

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Measurement of carbon solubility in magnesium alloys using GDOS

Hai-Lin Chen, Nan Li, Andre Klostermeier and Rainer Schmid-Fetzer

J. Analytical Atomic Spectrometry, 26 (2011) 2189-2196 dx.doi.org/10.1039/c1ja10128e

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Orientation and Phase Analysis of Nanoscale Grains Using Transmission Electron Microscopy

Martin Seyring, Xiaoyan Song, Markus Rettenmayr

Pract. Metallogr. 49 (2012)

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The Cu-Sn phase diagram Part I: New experimental results

S. Fürtauer(a), D. Li(b), D. Cupid(b) and H. Flandorfer(a,*)

(a): Institute of Inorganic Chemistry/Materials Chemistry, University of Vienna, Vienna, Austria
(b): Karlsruher Institut für Technologie, Institut für Angewandte Materialien, Karlsruhe, Germany
(*): Corresponding author

 Journal: Intermetallics 34 (2013) 142-147.

http://www.sciencedirect.com/science/article/pii/S0966979512003846,

DOI: 10.1016/j.intermet.2012.10.004

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The Cu-Sn phase diagram Part II: New thermodynamic assessment

D. Li(a,*), P. Franke(a), S. Fürtauer(b), D. Cupid(a), and H. Flandorfer(b)

(a): Karlsruher Institut für Technologie, Institut für Angewandte Materialien, Karlsruhe, Germany
(b): Institute of Inorganic Chemistry/Materials Chemistry, University of Vienna, Vienna, Austria
(*): Corresponding author

Journal: Intermetallics 34 (2013) 148-158.

http://www.sciencedirect.com/science/article/pii/S0966979512003901,

DOI: 10.1016/j.intermet.2012.10.010

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Lithium Insertion into Carbon-Rich SiOC Ceramics: Influence of Pyrolysis Temperature on Electrochemical Properties

Jan Kaspar

Reference: POWER16482

Journal of Power Sources, 244 (2013) 450-455

Online publication complete: 19-DEC-2012 DOI information:10.1016/j.jpowsour.2012.11.086

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Thermodynamic description of the layered O3 and O2 structural LiCoO2– CoO2 pseudo-binary systems

Keke Chang, Bengt Hallstedt, Denis Music, Julian Fischer, Carlos Ziebert, Sven Ulrich, Hans J. Seifert

CALPHAD: Computer Coupling of Phase Diagrams and Thermochemistry
2013 Volume 41, June 2013, Pages 6-15

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Lithium Diffusion in Sputter-Deposited Lithium Iron Phosphate Thin-Films

M. Köhler, F. Berkemeier, T. Gallasch, G. Schmitz

Journal of Power Sources 236 (2013) 61

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Investigation of the Lithium-rich Boundary of the Li1+xMn2-xO4 Cubic Spinel Phase in Air

Damian M. Cupid • Toni Lehmann • Thomas Bergfeldt •Harald Berndt • Hans J. Seifert

J Mater Sci (2013) 48:3395–3403; DOI 10.1007/s10853-012-7126-3

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Calorimetric studies of Cu-Li, Li-Sn, and Cu-Li-Sn

Fürtauer S.; Tserenjav E.; Yakymovych A.; Flandorfer H.

Journal of Chemical Thermodynamics (2013), 61, 105-116

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Neutron Reflectometry Studies on the Lithiation of Amorphous Silicon Electrodes in Lithium-Ion Batteries

B. Jerliu, L. Dörrer, E. Hüger, G. Borchardt, R. Steitz, U. Geckle, V. Oberst, M. Bruns, H. Schmidt

Phys. Chem. Chem. Phys. (2013) DOI:10.1039/C3CP44438D

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Excess volume in nanocrystalline lithium-carbon system

Wenwu Xu, Xiaoyan Song, Martin Seyring, Jiangtao He, Martin Drüe, Markus Rettenmayr

Micro&Nano Letters (2013) pp 1-4, doi: 10.1049/mnl.2012.0961

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Preparation and phase stability of nanocrystalline Li2C2 alloy

Jiangtao He, Xiaoyan Song, Wenwu Xu, Yuanyuan Zhou, Martin Seyring, Markus Rettenmayr

Materials Letters 94 (2013) 176-178

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Analysis of the phase stability of nanocrystalline Li2C2 alloy

Yuanyuan Zhou, Xiaoyan Song, Wenwu Xu, Jiangtao He, Martin Seyring, Markus Rettenmayr

Chinese Journal of Stereology and Image Analysis 17 (2012) 361-365

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Tailoring of CNT Surface Oxygen Groups by Gas-phase Oxidation and its Implications for Lithium Ion Batteries

S. Klink, E. Ventosa, W. Xia, F. La Mantia, M. Muhler, W. Schuhmann

Electrochemistry Communications 15 (2012) 10-13; http://dx.doi.org/10.1016/j.elecom.2011.11.012

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The Importance of Cell Geometry for Electrochemical Impedance Spectroscopy in Three-Electrode Lithium Ion Battery Test Cells

S. Klink, E. Madej, E. Ventosa, A. Lindner, F. La Mantia, W. Schuhmann;

Electrochemistry Communications 22 (2012) 120-123; http://dx.doi.org/10.1016/j.elecom.2012.06.010

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FEM modelling of a coaxial three-electrode test cell for electrochemical impedance spectroscopy in lithium ion batteries

S. Klink, D. Höche, F. La Mantia, W. Schuhmann;

Journal of Power Sources; accepted;

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Synthesis of Different Molybdenum Disulfide Nanostructures and their Applicability in Lithium Ion Batteries with Ionic Liquid Electrolytes

Daniel Albrecht, Hendrik Wulfmeier, Svetlozar Ivanov, Andreas Bund, Holger Fritze

Mater. Res. Soc. Symp. Proc. Vol. 1496 (2013), DOI: 10.1557/opl.2013.126

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Thin Film Calorimetry - Device Development and Application to Lithium Ion Battery Materials

Hendrik Wulfmeier, Daniel Albrecht, Svetlozar Ivanov, Julian Fischer, Rolf Grieseler, Peter Schaaf, Sven Ulrich, Andreas Bund, Holger Fritze

Mater. Res. Soc. Symp. Proc. Vol. 1496 (2013), DOI: 10.1557/opl.2013.104

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Electrochemical Performance of Ionic Liquid - Molybdenum Disulfide Li-Ion Batteries

Daniel Albrecht, Hendrik Wulfmeier, Svetlozar Ivanov, Andreas Bund, Holger Fritze

Journal of Applied Electrochemistry 43 (2013) 559–565
DOI 10.1007/s10800-013-0548-z

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Adjustable zero thermal expansion in antiperovskite Manganese Nitride

X.Y. Song, Z.H. Sun, Q.Z. Huang, G.N. Li, M. Rettenmayr, X.M. Liu, M. Seyring, G.H. Rao, F.X. Yin

Advanced Materials 23 (2011) 4690-4694

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Composite Materials Based on Polymer Derived SiCN Ceramic and Disordered Hard Carbons as Anodes for Lithium-Ion Batteries

M.Wilamowska, M.Graczyk-Zajac, R.Riedel

J. Power Sources
http://www.sciencedirect.com/science/article/pii/S0378775313005314

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Carbon-rich SiCN ceramics as high capacity/high stability anode material for lithium-ion batteries

L.M.Reinold, G.Graczyk-Zajac, Y.Gao, G.Mera, R.Riedel

J. Power Sources, 236(2013)224-229
http://www.sciencedirect.com/science/article/pii/S0378775313003194

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Prevention of Solid Electrolyte Interphase Damaging on silicon by Using Polymer Derived SiCN Ceramics

L.M.Reinold, G.Graczyk-Zajac, C.Fasel, R.Riedel

ECS Transactions, 35(2011) 37-44
http://ecst.ecsdl.org/content/35/34#content-block

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Thermodynamic Investigations of Copper Oxides Used as Conversion Type Electrodes in Lithium Ion Batteries

Maren Lepplea), Robert Adamb), Damian M. Cupida), Peter Frankea), Thomas Bergfeldta), Daniel Wadewitzc), David Rafajab), Hans J. Seiferta)

a): Karlsruher Institut für Technologie, Institut für Angewandte Materialien – Angewandte Werkstoffphysik            
b) Technische Universität Bergakademie Freiberg, Institute of Materials Science
c) Leibniz-Institut für Festkörper- und Werkstoffforschung Dresden, Institut für komplexe Materialien

 

Journal of Material Science April 2013; http://link.springer.com/article/10.1007%2Fs10853-013-7374-x

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Mathematical Modeling of Intercalation Batteries on Cell Level and Beyond

Manuel Landstorfer, Timo Jacob

Chem. Soc. Rev., 42(8), 3234--3252 (2013)

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Thermodynamics and phase diagrams for lithium ion batteries, in: Phase Equilibria - Materials for the future

D.M Cupid, E. Schuster, C. Ziebert, H.J. Seifert

Extended Abstracts of APDIC World Round-Robin Seminar, London, UK, June 25, 2012, Institute of Materials, Minerals and Mining, 1 Carlton House Terrace, London, UK, ISBN 978-1-86125-174-9, (2012) 29-32

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Raman spectroscopic studies of LixSiy compounds

T. Gruber , C. Röder , D. Thomas , F. Mertens and J. Kortus

J. Raman Spec. 2013, DOI 10.1002/jrs.4308

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The heat capacity and entropy of lithium silicides over the temperature range from (2 to 873) K

Daniel Thomas, Mahmoud Abdel-Hafiez, Thomas Gruber, Regina Hüttl, Jürgen Seidel, Anja U.B. Wolter, Bernd Büchner, Jens Kortus and Florian Mertens

J. Chem. Thermodynamics 64 (2013), 205-225

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Investigation of Copper-Cobalt-Oxides as Model Systems for Composite Interactions in Conversion-Type Electrodes for Lithium-Ion Batteries

D.Wadewitz,a W. Gruner,a M. Herklotz,a M. Klose,a L. Giebeler,a,b A. Voß,a J. Thomas,a T. Gemming,a J. Eckert,a,b and H. Ehrenberga,c

(a) IFW Dresden, Institute for Complex Materials, D-01171 Dresden, Germany
(b) TU Dresden, Institute of Materials Science, D-01062 Dresden, Germany
(c) Karlsruhe Institute of Technology (KIT), Institute for Applied Materials, D-76344 Eggenstein-Leopoldshafen,
     Germany

Journal of The Electrochemical Society, 160 (8) A1333-A1339 (2013) A1333; 0013-4651/2013/160(8)/A1333/7

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High-temperature thin-film calorimetry: a newly developed method applied to lithium ion battery materials

Hendrik Wulfmeier, Daniel Albrecht, Svetlozar Ivanov, Julian Fischer, Sven Ulrich, Andreas Bund, Holger Fritze

Journal of Material Science; DOI 10.1007/s10853-013-7455-x

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Si modified TiO2 nanotubes obtained by electrochemical anodization - promising anode material for energy storage application

Svetlozar Ivanov, Hendrik Wulfmeier, Daniel Albrecht, Rolf Griesler, Peter Schaaf, Holger Fritze, Andreas Bund

Proceedings “Anodisieren – von Korrosionsschutz bis zur Nanotechnologie”, 2012, p. 92, Fraunhofer Verlag, Dresden, ISBN:978-3-8396-0481-6

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Electrochemical behavior of anodically obtained titania nanotubes in organic carbonate and ionic liquid based Li ion containing electrolytes

Svetlozar Ivanov, Lin Cheng, Hendrik Wulfmeier, Daniel Albrecht, Holger Fritze, Andreas Bund

Electrochimica Acta 104 (2013) 228–235; DOI 10.1016/j.electacta.2013.04.115

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Phase and Microstructure Development in the Conversion Type Electrodes for Li-Ion Batteries Based on the Cu-Fe-O System

R. Adam, D. Wadewitz, W. Gruner, V. Klemm, H. Ehrenberg, D. Rafaja,

Journal of The Electrochemical Society, 160 (9) A1594
DOI: 10.1149/2.098309jes

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Determination of the chemical diffusion coefficient of Li-ions incarbon-rich silicon oxycarbide anodes by electro-analytical methods

Jan Kaspar, Magdalena Graczyk-Zajac, Ralf Riedel

Electrochimica Acta, 115 (2014) 665-670, pp. 665-670 DOI information: 10.1016/j.electacta.2013.10.184

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Insights into Degradation of Si Anodes from First-Principle Calculations

J. Rohrer and K. Albe

J. Phys. Chem. C, 2013, 117 (37), pp 18796–18803
DOI: 10.1021/jp401379d

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The Li-C phase equilibria

A. Kozlov, M. Seyring, M. Drüe, M. Rettenmayr, R. Schmid-Fetzer

Int. J. Mater. Res. (Z. Metallkunde), 104, 1066-1078 (2013) dx.doi.org/10.3139/146.110960

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Thermodynamic stability of Li2C2 and LiC6

M. Drüe, M. Seyring, A. Kozlov, X. Song, R. Schmid-Fetzer, M. Rettenmayr

J. Alloys Compounds, 575, 403-407 (2013)dx.doi.org/10.1016/j.jallcom.2013.06.001

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Structural, magnetic, and electrochemical properties of LiMn1-xNixPO4

 A. Ottmann, C. Jähne, H.-P. Meyer, R. Klingeler

Materials Research Bulletin 63, 6–12 (2015)

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Unusual spin fluctuations and magnetic frustration in olivine and non-olivine LiCoPO4 detected by 31P and 7Li nuclear magnetic resonance

S.H. Baek, R. Klingeler, C. Neef, C. Koo, B. Büchner, H.J. Grafe.

Phys. Rev. B 89, 134424 (2014)

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The effect of process parameters on floating zone crystal growth of selected cuprates

N. Wizent, N. Leps, G. Behr, R. Klingeler, B. Büchner, W. Löser.

J. Cryst. Growth 401, 596-600 (2014)

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Growth, characterization and magnetic properties of a Li(Mn,Ni)PO4 single crystal

K. Wang, A. Maljuk, C. G. F. Blum, T. Kolb, C. Jähne, C. Neef, H.-J. Grafe, L. Giebeler, H. Wadepohl, H.-P. Meyer, S. Wurmehl, R. Klingeler

J. Crystal Growth 386, 16-21. (2014)

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Experimental evidence for the coupling of Li-motion and structural distortions in LiMnPO4

C. Rudisch, H.-J. Grafe, J. Geck, S. Partzsch, M. v. Zimmermann, N. Wizent, R. Klingeler, B. Büchner

Phys. Rev. B 88, 054303 (2013)

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Morphology and agglomeration control of LiMnPO4 micro- and nanocrystals

C. Neef, C. Jähne, H.-P. Meyer, R. Klingeler

Langmuir 29, 8054–8060 (2013)

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A new LiCoPO4 polymorph via low temperature synthesis

C. Jähne, C. Neef, C. Koo, H.-P. Meyer, R. Klingeler

J Materials Chem. A 1, 2856-2862 (2013)

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A Secondary Ion Mass Spectrometry Study on the Mechanisms of Amorphous Silicon Electrode Lithiation in Li-Ion Batteries

E. Hüger, B. Jerliu, L. Dörrer, M. Bruns, G. Borchardt, H. Schmidt

Z. Phys. Chem. 229 (2015), 1375.

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Volume Expansion during Lithiation of Amorphous Silicon Thin Film Electrodes Studied by In-Operando Neutron Reflectometry

B. Jerliu, L. Dörrer, E. Hüger, B.-K. Seidlhofer, R. Steitz, U. Geckle, V. Oberst, M. Bruns, H. Schmidt

J. Phys. Chem. C 118 (2014), 9395.

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Electrochemical lithiation of silicon electrodes: neutron reflectometry and secondary ion mass spectrometry investigations

B. Jerliu, M. Lepke, L. Dörrer, E. Hüger, B.-K. Seidlhofer, R. Steitz, G. Borchardt, H. Schmidt

Int. J. Mat. Res. (under review).
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7Li in situ 1D NMR Imaging of a Lithium Ion Battery

Klamor, S., Zick, K., Oerther, T., Schappacher, F. M., Winter, M., & Brunklaus, G.

(2015)Physical Chemistry Chemical Physics, 17(6), 4458–4465.

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On the Interaction of Water-Soluble Binders and Nano Silicon Particles: Alternative Binder Towards Increased Cycling Stability at Elevated Temperatures

Klamor, S., Schr¨oder, M., Brunklaus, G., Niehoff, P., Berkemeier, F., Schappacher, F. M., & Winter, M.

(2015) Physical Chemistry Chemical Physics, 17, 5632–5641.

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Ion beam sputter deposition of LiCoO2 films

T. Stockhoff, T. Gallasch, F. Berkemeier, and G. Schmitz,

Thin solid films 520 (2012) 3668–3674.

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Lithium diffusion in sputter-deposited Li4Ti5O12 thin films

F. Wunde, F. Berkemeier, G. Schmitz,

Journal of Power Sources 215 (2012) 109-115.

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Lithium Diffusion in Sputter-Deposited Lithium Iron Phosphate Thin-Films

Mathias Köhler, Frank Berkemeier, Tobias Gallasch and Guido Schmitz,

Journal of Power Sources 236 (2013) 61-67

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Volume diffusion and interface transport in LiCoO2 measured by electrochromic absorption

Frank Berkemeier, Tobias Stockhoff, Guido Schmitz,

Acta Materialia, 80 (2014), 132-140.

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Ultra-Thin LiPON Films - Fundamental Properties and Application in Solid State Thin Film Batteries

Susann Nowak, Frank Berkemeier, Guido Schmitz, 

Journal of Power Sources 275 (2015) 144 - 150.

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Controlling the optical properties of sputtered-deposited LixV2O5 films

Marina Muñoz-Castro, Frank Berkemeier, Guido Schmitz, Annika Buchheit, and Hans Wiemhöfer

Journal of Applied Physics 120, 135106 (2016);

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LixV2O5 - Analysis of Surface Reactions by Spectroscopic Quartz Crystal Microgravimetry

Jeroen Terwort, Frank Berkemeier, Guido Schmitz, 

Journal of Power Sources 336 (2016) 172-178

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Synthesis of Nanostructured LiMn2O4 Thin Films by Glancing Angle Deposition for Li-ion Battery Applications

 S. Borhani-Haghighi, C. Khare, R. Trócoli, A. Dushina, M. Kieschnick, F. LaMantia, A. Ludwig
(2016) , Nanotechnology 27 455402
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Throughput Compositional and Structural Evaluation of a Lia(NixMnyCoz)Or Thin Film Battery Materials Library

S. Borhani-Haghighi, M. Kieschnick, Y. Motemani, A. Savan, D. Rogalla, H.-W. Becker, J. Meijer, A. Ludwig

(2013),High-, ACS Comb. Sci., 15, 401−409

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Scanning electrochemical microscopy applied to the investigation of lithium (de-)insertion in TiO2

G. Zampardi, E. Ventosa, F. La Mantia, W. Schuhmann

Electroanalysis 27 (2015) 1017-1025.

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Mechanical properties of SiLix thin films at different stages of electrochemical Li insertion

A.-H. Zinn, S. Borhani-Haghighi, E. Ventosa, J. Pfetzing-Micklich, N. Wieczorek, W. Schuhmann, A. Ludwig

Phys. Stat. Sol. A: Appl. Mater. Sci. 11 (2014) 2650-256.

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New insights into SEI formation in lithium ion batteries: Inhomogeneous distribution of irreversible charge losses across graphite

S. Klink, P. Weide, E. Ventosa, M. Muhler, W. Schuhmann, F. La Mantia

ECS Trans. 62 (2014) 265-271.

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Low temperature hydrogen reduction of high surface area anatase TiO2 and anatase/β-TiO2 applied in high charging rate Li-ion batteries

E. Ventosa, A. Tymoczko, K. Xie, W. Xia, M. Muhler, W. Schuhmann

ChemSusChem 7 (2014) 2584-2589.

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Vertical distribution of cross-currents, overpotentials and irreversible charge losses in graphite electrodes for Lithium ion batteries

S. Klink, W. Schuhmann, F. La Mantia

ChemSusChem 7 (2014) 2159-2166.

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TiO2(B)/anatase composites synthesized by spray drying as high performance negative electrode material in Li-ion batteries

E. Ventosa, B. Mei, W. Xia, M. Muhler, W. Schuhmann

ChemSusChem 6 (2013) 1312-1315.

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CNTs grown on oxygen-deficient anatase TiO2-δ as high-rate composite electrode material for lithium ion batteries

E. Ventosa, P. Chen, W. Schuhmann, W. Xia

Electrochem. Commun. 22 (2012) 132–135.

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POROUS CARBON MATERIALS FOR LI-S BATTERIES BASED ON RESORCINOL-FORMALDEHYDE RESIN WITH INVERSE OPAL STRUCTURE

Agrawal, M.; Choudhury, S.; Gruber, K.; Simon, F.; Fischer, D.; Albrecht, V.; Göbel, M., Koller, S., Stamm, M; Ionov, L.*

Journal of Power Sources (IF: 6.4), 2014, 261, 363.

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NANOPOROUS CATHODES FOR HIGH-ENERGY LI-S BATTERIES FROM GYROID BLOCK COPOLYMER TEMPLATES

Choudhury, S.; Agrawal, M.*; Formanek, P.; Jehnichen, D.; Fischer, D.; Krause, B.; Albrecht, V.; Stamm, M.; Ionov, L.

ACS Nano (IF: 13.9), 2015, 9 (6), 6147.

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SULFUR X-RAY ABSORPTION FINE STRUCTURE IN POROUS LI-S CATHODE FILMS MEASURED UNDER ARGON ATMOSPHERIC CONDITIONS

Müller, M.*; Choudhury, S.; Gruber, K.; Cruz, V.B.; Fuchsbichler, B.; Jacob, T.; Koller, S.; Stamm, M.; Ionov, L.; Beckhoff, B. 

Spectrochimica Acta Part B: Atomic Spectroscopy (IF: 3.2), 2014, 94, 22.

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EFFECT OF FIBROUS SEPARATORS ON THE PERFORMANCE OF LITHIUM-SULFUR BATTERIES

Choudhury, S.*; Azizi, M.; Raguzin, I.; Göbel, M.; Michel, S.; Willomitzer, A.; Merchtcherine, V.; Stamm, M.*; Ionov, L.*

PCCP (IF: 4.1), 2017, 19 (18), 11239.

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