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Featured researches published by Uta Rodehorst.


ACS Nano | 2017

A Step toward High-Energy Silicon-Based Thin Film Lithium Ion Batteries

Antonia Reyes Jiménez; Richard Klöpsch; Ralf Wagner; Uta Rodehorst; Martin Kolek; Roman Nölle; Martin Winter; Tobias Placke

The next generation of lithium ion batteries (LIBs) with increased energy density for large-scale applications, such as electric mobility, and also for small electronic devices, such as microbatteries and on-chip batteries, requires advanced electrode active materials with enhanced specific and volumetric capacities. In this regard, silicon as anode material has attracted much attention due to its high specific capacity. However, the enormous volume changes during lithiation/delithiation are still a main obstacle avoiding the broad commercial use of Si-based electrodes. In this work, Si-based thin film electrodes, prepared by magnetron sputtering, are studied. Herein, we present a sophisticated surface design and electrode structure modification by amorphous carbon layers to increase the mechanical integrity and, thus, the electrochemical performance. Therefore, the influence of amorphous C thin film layers, either deposited on top (C/Si) or incorporated between the amorphous Si thin film layers (Si/C/Si), was characterized according to their physical and electrochemical properties. The thin film electrodes were thoroughly studied by means of electrochemical impedance spectroscopy, Raman spectroscopy, X-ray photoelectron spectroscopy, and atomic force microscopy. We can show that the silicon thin film electrodes with an amorphous C layer showed a remarkably improved electrochemical performance in terms of capacity retention and Coulombic efficiency. The C layer is able to mitigate the mechanical stress during lithiation of the Si thin film by buffering the volume changes and to reduce the loss of active lithium during solid electrolyte interphase formation and cycling.


Electrochimica Acta | 2013

Blends of lithium bis(oxalato)borate and lithium tetrafluoroborate: Useful substitutes for lithium difluoro(oxalato)borate in electrolytes for lithium metal based secondary batteries?

Tanja Schedlbauer; Uta Rodehorst; C. Schreiner; Heiner J. Gores; Martin Winter


Journal of The Electrochemical Society | 2016

Learning from Overpotentials in Lithium Ion Batteries: A Case Study on the LiNi1/3Co1/3Mn1/3O2 (NCM) Cathode

Johannes Kasnatscheew; Uta Rodehorst; Benjamin Streipert; Simon Wiemers-Meyer; Rene Jakelski; Ralf Wagner; Isidora Cekic Laskovic; Martin Winter


Carbon | 2018

Carbons from biomass precursors as anode materials for lithium ion batteries: New insights into carbonization and graphitization behavior and into their correlation to electrochemical performance

Olga Fromm; Andreas Heckmann; Uta Rodehorst; Joop Frerichs; Dina Becker; Martin Winter; Tobias Placke


228th ECS Meeting (October 11-15, 2015) | 2015

Long Term Aging of Automotive Type Lithium-Ion Cells

Alex Friesen; Carola Schultz; Gunther Brunklaus; Uta Rodehorst; Andrea Wilken; Jan Haetge; Martin Winter; Falko M. Schappacher


Journal of The Electrochemical Society | 2014

Investigations about the Use and the Degradation Mechanism of LiNi0.5Mn1.5O4 in a High Power LIC

Adrian Brandt; Andrea Balducci; Uta Rodehorst; Sebastian Menne; Martin Winter; Aiswarya Bhaskar


Electrochimica Acta | 2014

Using Polyisobutylene as a Non-Fluorinated Binder for Coated Lithium Powder (CLiP) Electrodes

Jennifer Heine; Uta Rodehorst; Xin Qi; Juan Pablo Badillo; Christoph Hartnig; Ulrich Wietelmann; Martin Winter; Peter Bieker


225th ECS Meeting (May 11-15, 2014) | 2014

Lithium-Ion Cell Nail Penetration Safety Experiments under Adiabatic Conditions

Mathias Reichert; Jan Haetge; Debbie Berghus; Christian Wendt; Vladislav Meier; Uta Rodehorst; Stefano Passerini; Falko M. Schappacher; Martin Winter


Carbon | 2018

New insights into electrochemical anion intercalation into carbonaceous materials for dual-ion batteries: Impact of the graphitization degree

Andreas Heckmann; Olga Fromm; Uta Rodehorst; Patrick Münster; Martin Winter; Tobias Placke


Advanced Materials Interfaces | 2017

Lithium‐Metal Foil Surface Modification: An Effective Method to Improve the Cycling Performance of Lithium‐Metal Batteries

Jens Becking; Albert Gröbmeyer; Martin Kolek; Uta Rodehorst; Susanne Schulze; Martin Winter; Peter Bieker; Marian Cristian Stan

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Ralf Wagner

University of Münster

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Stefano Passerini

Karlsruhe Institute of Technology

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