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Dive into the research topics where Christoph Stangl is active.

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Featured researches published by Christoph Stangl.


ELECTROCHEMICAL STORAGE MATERIALS: SUPPLY, PROCESSING, RECYCLING AND MODELLING: Proceedings of the 2nd International Freiberg Conference on Electrochemical Storage Materials | 2016

Next-generation materials for electrochemical energy storage – Silicon and magnesium

Stefan Koller; Harald Kren; Martin Schmuck; Bernd Fuchsbichler; Christoph Stangl; Colin God; Jürgen Garche

The paper describes two ways for increasing the specific energy of Li-ion batteries in order to extend the EV driving range. The first way is the development of a Si/graphite anode. This anode consists of n-Si/graphite composite particles, a special cellulose based binder and a 3D-collector (POLYMET®). With this anode a specific capacity of ∼1,200 mAh/g is obtained. More than 500 cycles with this anode and prelithiation is reachable. As a second way, for higher specific energy, Mg-ion systems are addressed. The main problem of Mg-ion cells is the anode. Mg and also graphite are forming together with the electrolyte (except Grignard type electrolytes) surface layers, which have no Mg2+ conductivity. By changing the electrolyte, however, an intercalation/deintercalation into graphite can be shown for the first time. Based on this innovation Mg-ion cells with MgxV2O5 as cathode are possible having a cell voltage of ∼3.7 V.


Meeting Abstracts | 2008

Propargyl Benzenesulfonate - A Triple-Bonded Electrolyte Additive for Electrolytes in Lithium Ion Batteries

Cornelia Bayer; Bernd Fuchsbichler; Stefan Koller; Harald Kren; Martin Schmuck; Michael Sternad; Colin God; Simon F. Lux; Christoph Stangl; Martin Winter


Archive | 2012

Material for a negative electrode of a lithium-ion secondary battery, comprises carbon, and an alloy and/or a mixture of silicon with an element of the first main group of the periodic table elements with the exception of lithium

Cornelia Bayer; Christoph Stangl; Colin God; Stefan Koller; Nikolaus Hochgatterer; Heimo Kreimaier; Gabriel Stabentheiner


Archive | 2011

Material für negative elektroden und negative elektroden sowie batterien umfassend dieses material und verfahren zur herstellung des materials

Cornelia Bayer; Christoph Stangl; Colin God; Stefan Koller; Nikolaus Hochgatterer; Heimo Kreimaier; Gabriel Stabentheiner


Archive | 2011

Material for negative electrodes, and negative electrodes and batteries comprising said material, and method for producing the material

Cornelia Bayer; Christoph Stangl; Colin God; Stefan Koller; Nikolaus Hochgatterer; Heimo Kreimaier; Gabriel Stabentheiner


Meeting Abstracts | 2010

2-Chloro-4-phenylthiazole: A New Film-Forming Additive for Electrolytes in Lithium-Ion Batteries

Cornelia Bayer; Colin God; Martin Schmuck; Christoph Stangl; Stefan Koller


Meeting Abstracts | 2010

A New High Capacity Graphite /Silicon Composite Material for Lithium-Ion Batteries

Bernd Fuchsbichler; Christoph Stangl; Harald Kren; Michael Sternad; Cornelia Bayer; Colin God; Stefan Koller


Meeting Abstracts | 2010

3-Electrode Measurements of Industrially Manufactured Lithium-Ion Batteries

Christoph Stangl; Cornelia Bayer; Bernd Fuchsbichler; Colin God; Stefan Koller


Meeting Abstracts | 2010

Investigation of the Oxidative Stability of Electrolyte Systems on 5 V Cathode Materials by In Situ Mass Spectrometry

Colin God; Olivia Moser; Cornelia Bayer; Roland Hohl; Christoph Stangl; Michael Sternad; Stefan Koller; Klaus Leitner; Martin Schulz-Dobrick


Meeting Abstracts | 2009

A New High Capacity Graphite-Core/Silicon-Shell Composite Material for Lithium Ion Batteries

Bernd Fuchsbichler; Christoph Stangl; Harald Kren; Michael Sternad; Roland Hohl; Stefan Koller

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Colin God

Graz University of Technology

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Bernd Fuchsbichler

Graz University of Technology

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Michael Sternad

Graz University of Technology

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Martin Schmuck

Graz University of Technology

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Simon F. Lux

University of California

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