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Benjamin Kohn

Researcher at Leibniz Institute for Neurobiology

Publications -  9
Citations -  198

Benjamin Kohn is an academic researcher from Leibniz Institute for Neurobiology. The author has contributed to research in topics: Chemistry & Adsorption. The author has an hindex of 3, co-authored 5 publications receiving 66 citations.

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A High-Voltage, Dendrite-Free, and Durable Zn-Graphite Battery.

TL;DR: A high-voltage and durable Zn-graphite battery, which is enabled by a LiPF6 -containing hybrid electrolyte, is reported, which leads to a super-wide electrochemical stability window of 4 V and both dendrite-free and reversible dual-anion intercalation into the graphite cathode are realized.
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Characterization of chitosan with different degree of deacetylation and equal viscosity in dissolved and solid state - Insights by various complimentary methods.

TL;DR: In this paper, the authors focused on the characterization of chitosan most important parameters, such as solubility, crystallinity, degree of deacetylation (DD) and molecular weight.
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Effects of Weak Nonspecific Interactions with ATP on Proteins

TL;DR: In this paper, a concentration-dependent noncovalent interaction between ATP and various proteins was observed, most pronounced for an intrinsically disordered protein (α-synuclein) and for residues in flexible regions (e.g., loops or termini) of two representative folded proteins (ubiquitin and the dimeric ubiquitin-binding domain of p62).
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An Efficient Rechargeable Aluminium–Amine Battery Working Under Quaternization Chemistry

TL;DR: This work demonstrates an efficient Al-amine battery based on a quaternization reaction, in which nitrogen (radical) cations are formed to store anionic Al complex, which shows excellent stability against self discharge, far beyond conventional Al-graphite battery.
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An Anode‐Free Zn–Graphite Battery

TL;DR: In this paper , an anode-free Zn-graphite battery enabled by efficient Zn plating-stripping onto a silver-coated Cu substrate is demonstrated, where the silver coating guides uniform Zn deposition without dendrite formation or side reaction over a wide range of electrolyte concentrations.