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Dive into the research topics where Alexander Panchenko is active.

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Featured researches published by Alexander Panchenko.


Advanced Materials | 2011

Sulfur‐Impregnated Activated Carbon Fiber Cloth as a Binder‐Free Cathode for Rechargeable Li‐S Batteries

Ran Elazari; Gregory Salitra; Arnd Garsuch; Alexander Panchenko; Doron Aurbach

A route for the preparation of binder-free sulfur-carbon cathodes is developed for lithium sulfur batteries. The method is based on the impregnation of elemental sulfur into the micropores of activated carbon fibers. These electrodes demonstrate good electrochemical performance at high current density attributed to the uniform dispersion of sulfur inside the carbon fiber.


Chimia | 2013

Novel cathode material for rechargeable lithium-sulfur batteries.

Oliver Gronwald; Arnd Garsuch; Alexander Panchenko

This article describes the synthesis and characterization of a novel crosslinked polymer with tricyanuric acid core bearing tetrasulfide bridges as a novel redox polymerization electrode material for rechargeable lithium-sulfur batteries. The new material was synthesized by reaction of stoichiometric sulfur monochloride amounts with trithiocyanuric acid and the structure of the redox polymer proven by the means of elementary analysis, infrared spectroscopy and Raman spectroscopy. Electrochemical evaluation of the polymer as electroactive cathode component showed cycling stability up to 140 cycles after initial capacity of 650 mAhg(-1) with 73% utilization of the theoretical specific capacity (893 mAhg(-1)) regarding the electroactive tetrasulfide moieties. Cell operation with excess amounts of electrolyte did not accelerate the cell degradation, indicating that the reduced sulfur species such as lower polysulfides (Li2S, Li2S2) and tris lithium salt of trithiocyanuric acid are efficiently immobilized on the cathode side.


Electrochemistry Communications | 2012

Rechargeable lithiated silicon–sulfur (SLS) battery prototypes

Ran Elazari; Gregory Salitra; Gregory Gershinsky; Arnd Garsuch; Alexander Panchenko; Doron Aurbach


Journal of Power Sources | 2012

Influence of different electrode compositions and binder materials on the performance of lithium–sulfur batteries

Holger Schneider; Arnd Garsuch; Alexander Panchenko; Oliver Gronwald; Nicole Janssen; Petr Novák


Journal of The Electrochemical Society | 2012

Li Ion Cells Comprising Lithiated Columnar Silicon Film Anodes, TiS2 Cathodes and Fluoroethyene Carbonate (FEC) as a Critically Important Component

Ran Elazari; Gregory Salitra; Gregory Gershinsky; Arnd Garsuch; Alexander Panchenko; Doron Aurbach


Electrochemistry Communications | 2010

FeAgMo2O8 — A novel oxygen evolution catalyst material for alkaline metal–air batteries

Arnd Garsuch; Alexander Panchenko; Claudia Querner; Andrey Karpov; Sabine Huber; Rüdiger Oesten


Archive | 2009

CATALYST INK COMPRISING AN IONIC LIQUID AND ITS USE IN THE PRODUCTION OF ELECTRODES, CCMS, GDES AND MEAS

Oemer Uensal; Sigmar Braeuninger; Xiao Steimle; Alexander Panchenko


Archive | 2011

ELECTRODES AND PRODUCTION AND USE THEREOF

Arnd Garsuch; Alexander Panchenko; Andrey Karpov; Rüdiger Schmidt; Sabine Huber


Archive | 2010

CATALYST FOR ELECTROCHEMICAL APPLICATIONS

Ekkehard Schwab; Sigmar Braeuninger; Alexander Panchenko; Claudia Querner; Oemer Uensal; Markus Vogt; Qinggang He; Nasgappan Ramaswamy; Sanjeev Mukerjee


Archive | 2009

IONIC LIQUID-CONTAINING CATALYST INK AND THE USE THEREOF IN THE PRODUCTION OF ELECTRODES, CCMS, GDES AND MEAS

Oemer Uensal; Sigmar Braeuninger; Xiao Steimle; Alexander Panchenko

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Claudia Querner

Dresden University of Technology

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