Title : Sn-C and Se-C Co-Bonding SnSe/Few-Layered Graphene Micro-Nano Structure: Route to a Densely Compacted and Durable Anode for Lithium/Sodium-Ion Batteries.

Pub. Date : 2019 Oct 9

PMID : 31538763






2 Functional Relationships(s)
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1 Herein, an SnSe/FLG (few-layer graphene) composite with high tap density (2.3 g cm-3) is synthesized via plasma milling method, in which SnSe nanoparticles are strongly bound with the FLG matrix, owing to both Sn-C and Se-C bonds, to form nanosized primary particles and then assemble to microsized secondary granules. Graphite filaggrin Homo sapiens
2 Herein, an SnSe/FLG (few-layer graphene) composite with high tap density (2.3 g cm-3) is synthesized via plasma milling method, in which SnSe nanoparticles are strongly bound with the FLG matrix, owing to both Sn-C and Se-C bonds, to form nanosized primary particles and then assemble to microsized secondary granules. Graphite filaggrin Homo sapiens