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List of works by Michael Metzger

Anodic Decomposition of Trimethylboroxine as Additive for High Voltage Li-Ion Batteries

Anodic Oxidation of Conductive Carbon and Ethylene Carbonate in High-Voltage Li-Ion Batteries Quantified by On-Line Electrochemical Mass Spectrometry

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Antimony Doped Tin Oxide–Synthesis, Characterization and Application as Cathode Material in Li-O2Cells: Implications on the Prospect of Carbon-Free Cathodes for Rechargeable Lithium-Air Batteries

Carbon Coating Stability on High-Voltage Cathode Materials in H2O-Free and H2O-Containing Electrolyte

Chemical versus Electrochemical Electrolyte Oxidation on NMC111, NMC622, NMC811, LNMO, and Conductive Carbon

scientific article published on 14 September 2017

Consumption of Fluoroethylene Carbonate (FEC) on Si-C Composite Electrodes for Li-Ion Batteries

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Effect of Liquid Electrolyte Soaking on the Interfacial Resistance of Li7La3Zr2O12 for All-Solid-State Lithium Batteries

scientific article published on 14 April 2020

Gas Evolution at Graphite Anodes Depending on Electrolyte Water Content and SEI Quality Studied by On-Line Electrochemical Mass Spectrometry

Hydrolysis of Ethylene Carbonate with Water and Hydroxide under Battery Operating Conditions

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Origin of H2Evolution in LIBs: H2O Reduction vs. Electrolyte Oxidation

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Oxygen Release and Its Effect on the Cycling Stability of LiNixMnyCozO2(NMC) Cathode Materials for Li-Ion Batteries

Quantification of PF5 and POF3 from Side Reactions of LiPF6 in Li-Ion Batteries

Role of 1,3-Propane Sultone and Vinylene Carbonate in Solid Electrolyte Interface Formation and Gas Generation

The 2016 H. H. Uhlig Summer Research Fellowship — Summary Report: Role of Conducting Salt on Anodic Stability of Conductive Carbon and Ethylene Carbonate in High-Voltage Li-Ion Cells

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The Influence of Water and Protons on Li2O2Crystal Growth in Aprotic Li-O2Cells

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Understanding the Origins of Higher Capacities at Faster Rates in Lithium-Excess LixNi2–4x/3Sbx/3O2

Vertically Aligned Two-Dimensional Graphene-Metal Hydroxide Hybrid Arrays for Li-O2 Batteries.

scientific article