ISSN 1608-4039 (Print)
ISSN 1680-9505 (Online)


Ushakov Arseni Vladimirovich

Ushakov Arseni Vladimirovich's picture
Lastname: 
Ushakov
First name: 
Arseni
Middle name: 
Vladimirovich
Sex: 
Male
Position: 
ассистент
Country: 
Russia

Дополнительные данные

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AuthorID (eLibrary.Ru): 
SPIN-код (eLibrary): 
6225-0061

Статьи автора

Авторы Название статьи Журнал
Kharchikova E. V., Bulyukina V. A., Ushakov A. V. Electrochemical System of LiTi?(PO?)? | 1 M Aqueous Li?SO? | LiFePO? and Prototypes of the Lithium-Ion Battery Based on it
Rybakov K. S., Ushakov A. V. High-voltage Cathode Material Based on LiCoVO? for Lithium-Ion Battery: Development and Research
Gamayunova I. M., Ushakov A. V. Optimizing of Conditions for the Solid-State Synthesis of Lithium-Ion Battery Electrode Materials Using the Multifactorial Experiment Planning
Ushakov A. V., Makhov S. V., Bulyukina V. A., Romanova V. O. Development of the Electrode Material of the Lithium-ion Battery Based on Lithium-nickel(II) and Cuprum(II)-Lithium Vanadates
Makhov S. V., Ushakov A. V., Ivanishchev A. V., Gridina N. A., Churikov A. V., Gamayunova I. M., Volynskii V. V., Klyuev V. V. Peculiarities of Lithium Pentatianate and Lithium – Vanadium(III) Phosphate Joint Operation in the Lithium-accumulating System
Bulyukina V. A., Ushakov A. V., Churikov A. V. Functional Behavior of the Materials Based on Iron(II)–Lithium Phosphate with the Trifilite Structure in the Lithium Accumulatory System with Aqueous Electrolyte
Churikov A. V., Ivanishchev A. V., Gamayunova I. M., Ushakov A. V., Churikov M. A. Calculation of density, viscosity, and conductivity for Na(K)BH4 – Na(K)BO2 – Na(K)OH – H2O solutions used in hydrogen power engineering
Rybakov K. S., Ushakov A. V. Application of operando X-ray diffraction to evaluate phase transformations of a LiCoVO₄ cathode
Ushakov A. V., Rybakov K. S., Khrykina A. V., Gamayunova I. M. Probabilistic models of the capacity of the electrode material in a wide range of current loads
Ushakov A. V., Rybakov K. S., Khrykina A. V. Composite electrodes based on Li3V2(PO4)3, Li4Ti5O12 and carbon nanotubes: The influence of composition, thickness and surface morphology on electrochemical properties