Silicon electrowinning by molten salts electrolysis
SK Padamata, G Saevarsdottir - Frontiers in Chemistry, 2023 - frontiersin.org
Electrochemically produced Si in molten salts can be used to fabricate electronic and
photovoltaic devices. The major factors influencing the structure and morphology of Si …
photovoltaic devices. The major factors influencing the structure and morphology of Si …
Silicon electrodeposition for microelectronics and distributed energy: A mini-review
A Suzdaltsev - Electrochem, 2022 - mdpi.com
Due to its prevalence in nature and its particular properties, silicon is one of the most
popular materials in various industries. Currently, metallurgical silicon is obtained by …
popular materials in various industries. Currently, metallurgical silicon is obtained by …
Quantifying volume change in porous electrodes via the multi-species, multi-reaction model
TR Garrick, MA Fernandez… - Journal of the …, 2023 - iopscience.iop.org
Automotive manufacturers are working to improve individual cell and overall pack design by
increasing their performance, durability, and range, while reducing cost; and active material …
increasing their performance, durability, and range, while reducing cost; and active material …
Electroreduction of silicon from the NaI–KI–K2SiF6 melt for lithium-ion power sources
RK Abdurakhimova, MV Laptev, NM Leonova… - Chimica Techno Acta …, 2022 - elar.urfu.ru
Silicon and silicon-based materials are increasingly used in microelectronics, metallurgy
and power generation. To date, the active study aimed at the development of silicon …
and power generation. To date, the active study aimed at the development of silicon …
Study into the possibility of silicon electrodeposition from a low-fluoride KCl-K2SiF6 melt
T Gevel, S Zhuk, A Suzdaltsev, Y Zaikov - Ionics, 2022 - Springer
The possible use of the KCl-K2SiF6 molten system for silicon electrodeposition is
considered. The kinetics of silicon electroreduction on glassy carbon in the KCl melt with the …
considered. The kinetics of silicon electroreduction on glassy carbon in the KCl melt with the …
Quantifying Aging-Induced Irreversible Volume Change of Porous Electrodes
TR Garrick, Y Miao, E Macciomei… - Journal of the …, 2023 - iopscience.iop.org
Automotive manufacturers are working to improve cell and pack design by increasing their
performance, durability, and range. One of the critical factors to consider as the industry …
performance, durability, and range. One of the critical factors to consider as the industry …
Electrodeposition of Silicon in the Low-Temperature LiCl-KCl-CsCl-K2SiF6 Melt Under Direct and Pulse Current
Y Parasotchenko, A Suzdaltsev… - Journal of The …, 2024 - iopscience.iop.org
In this work, the effect of electrolysis modes and their parameters on the morphology of the
silicon deposits on glassy carbon were studied. In direct current mode it was found that an …
silicon deposits on glassy carbon were studied. In direct current mode it was found that an …
Electrodeposition of Silicon Fibers from KI–KF–KCl–K2SiF6 Melt and Their Electrochemical Performance during Lithiation/Delithiation
A Leonova, N Leonova, L Minchenko, A Suzdaltsev - Electrochem, 2024 - mdpi.com
The possibility of using Si-based anodes in lithium-ion batteries is actively investigated due
to the increased lithium capacity of silicon. The paper reports the preparation of submicron …
to the increased lithium capacity of silicon. The paper reports the preparation of submicron …
Effect of the Substrate Material and the Parameters of Silicon Electrodeposition from the LiCl–KCl–CsCl–K2SiF6 Melt on the Morphology of the Deposit
OB Pavlenko, YA Parasotchenko… - Russian Metallurgy …, 2023 - Springer
The development of methods for producing silicon and materials based on it with
controllable morphology and composition of microimpurities is a challenging problem, since …
controllable morphology and composition of microimpurities is a challenging problem, since …
C/SiC-based anodes for lithium-ion current source
NM Leonova, AM Leonova… - Electrochemical …, 2023 - journals.rcsi.science
Compositions of ultrafine Si and C particles are promising anode materials for lithium-ion
power sources with improved energy characteristics. In the work, samples of lithium-ion …
power sources with improved energy characteristics. In the work, samples of lithium-ion …