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Evgenij Barsoukov

Publications -  7
Citations -  325

Evgenij Barsoukov is an academic researcher. The author has contributed to research in topics: Electrical impedance & Battery (electricity). The author has an hindex of 5, co-authored 7 publications receiving 306 citations.

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Universal battery parameterization to yield a non-linear equivalent circuit valid for battery simulation at arbitrary load

TL;DR: In this paper, a method of numerical representation for electrical storage cells based on measurement of wide frequency range impedance spectra at a number of different states of charge and measurement of the depth-of-discharge dependence of equilibrium voltage are developed.
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The effect of low-temperature conditions on the electrochemical polymerization of polypyrrole films with high density, high electrical conductivity and high stability

TL;DR: In this paper, high-density polypyrrole-hexafluorophosphate (PPy-PF6) films with high density (∼1.4 g/cm3), high conductivity (>300 S/cm for unstretched film) and high electrochemical stability are obtained reproducibly by galvanostatic polymerization at low-temperature conditions.
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Thermal impedance spectroscopy for Li-ion batteries using heat-pulse response analysis

TL;DR: In this article, a process has been devised to generate an external heat pulse with heating wire and to measure the response of the Li-ion batteries of cylindrical type, which can be used to obtain simultaneously the thermal capacity and the thermal conductivity of the battery by nonlinear complex least-squares fit of the spectrum to the thermal impedance model.
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Effect of Low‐Temperature Conditions on Passive Layer Growth on Li Intercalation Materials In Situ Impedance Study

TL;DR: In this paper, the formation of insulating layers at the surfaces of microscopic particles of mesocarbon microbeads (MCMB), graphite, and hard carbon during the first Li-intercalation into these materials at ambient temperature as well as at {minus}20 C was investigated.
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A novel impedance spectrometer based on carrier function Laplace-transform of the response to arbitrary excitation

TL;DR: In this article, a novel impedance spectrometer has been developed to obtain good quality spectra for electrochemical cells or devices in the minimum time required by the Nyquist theorem for the lowest frequency in the spectrum.