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dc.contributor.authorNevar, A. A.ru
dc.contributor.authorNedelko, M. I.ru
dc.contributor.authorTarasenko, N. V.ru
dc.contributor.authorChen, G.ru
dc.contributor.authorShi, L.ru
dc.coverage.spatialМинскru
dc.date.accessioned2023-11-11T08:51:21Z
dc.date.available2023-11-11T08:51:21Z
dc.date.issued2023
dc.identifier.citationПлазменный синтез кремний-углеродных композитов для анодов литий-ионных аккумуляторов / A. A. Nevar [и др.] // Беларусь-Китай: контуры инновационно-технологического сотрудничества : сборник материалов научно-практической конференции (Минск, 19-20 октября 2023 г.) // Республиканское инновационное унитарное предприятие «Научно-технологический парк БНТУ «Политехник» ; сост. М. А. Войтешонок. – Минск : БНТУ, 2023. – С. 91-92.ru
dc.identifier.urihttps://rep.bntu.by/handle/data/137141
dc.description.abstractOne of the key challenges of modern technology is the development of efficient methods for producing and storing energy. Against the backdrop of the intensive development of a new generation of alternative “green” energy, developments in the field of improving lithium-ion batteries seem relevant and promising. However, since currently used graphite-based anode materials are limited by theoretical specific capacity values (372 mAh/g), the development of new materials for application in lithium-ion battery technology is in high demand. Silicon-based materials with a high theoretical capacity of 4200 mAh/g are being considered as a promising alternative to graphite. However, the practical use of silicon anodes is difficult due to the significant volumetric expansion of silicon (~400 %) during repeated lithiation/delithiation, which leads to instability of the resulting electrode materials. Si-C nanocomposite anode materials have been proposed as a solution due to their high capacity and stability.ru
dc.language.isoruru
dc.publisherБНТУru
dc.titleПлазменный синтез кремний-углеродных композитов для анодов литий-ионных аккумуляторовru
dc.typeWorking Paperru


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