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In situ magnesiothermic reduction synthesis of a Ge@C composite for high-performance lithium-ion bat...

In situ magnesiothermic reduction synthesis of a Ge@C composite for high-performance lithium-ion bat...

https://devfeature-collection.sl.nsw.gov.au/record/TN_cdi_doaj_primary_oai_doaj_org_article_5264038ddcd143b4a970f4b79467f2e1

In situ magnesiothermic reduction synthesis of a Ge@C composite for high-performance lithium-ion batterie anodes

About this item

Full title

In situ magnesiothermic reduction synthesis of a Ge@C composite for high-performance lithium-ion batterie anodes

Publisher

Germany: Beilstein-Institut zur Föerderung der Chemischen Wissenschaften

Journal title

Beilstein journal of nanotechnology, 2023, Vol.14 (1), p.751-761

Language

English

Formats

Publication information

Publisher

Germany: Beilstein-Institut zur Föerderung der Chemischen Wissenschaften

More information

Scope and Contents

Contents

Metallothermic, especially magnesiothermic, solid-state reactions have been widely applied to synthesize various materials. However, further investigations regarding the use of this method for composite syntheses are needed because of the high reactivity of magnesium. Herein, we report an in situ magnesiothermic reduction to synthesize a composite...

Alternative Titles

Full title

In situ magnesiothermic reduction synthesis of a Ge@C composite for high-performance lithium-ion batterie anodes

Identifiers

Primary Identifiers

Record Identifier

TN_cdi_doaj_primary_oai_doaj_org_article_5264038ddcd143b4a970f4b79467f2e1

Permalink

https://devfeature-collection.sl.nsw.gov.au/record/TN_cdi_doaj_primary_oai_doaj_org_article_5264038ddcd143b4a970f4b79467f2e1

Other Identifiers

ISSN

2190-4286

E-ISSN

2190-4286

DOI

10.3762/bjnano.14.62

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