Title : Mo-Doped SnO2 Nanoparticles Embedded in Ultrathin Graphite Nanosheets as a High-Reversible-Capacity, Superior-Rate, and Long-Cycle-Life Anode Material for Lithium-Ion Batteries.

Pub. Date : 2020 Aug 11

PMID : 32674578






3 Functional Relationships(s)
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1 As a result, the Mo-SnO2-graphite composite delivers high reversible capacity of 1317.4 mAhg-1 at 0.2 Ag-1 after 200 cycles with the high initial coulombic efficiency (ICE) of 68.77%, superior rate capacity of 514.0 mAhg-1 even at 5 Ag-1 and long term cycling stability of 759.0 mAhg-1 after 950 cycles at 1.0 Ag-1. Tin(IV) oxide thioredoxin domain containing 12 Homo sapiens
2 As a result, the Mo-SnO2-graphite composite delivers high reversible capacity of 1317.4 mAhg-1 at 0.2 Ag-1 after 200 cycles with the high initial coulombic efficiency (ICE) of 68.77%, superior rate capacity of 514.0 mAhg-1 even at 5 Ag-1 and long term cycling stability of 759.0 mAhg-1 after 950 cycles at 1.0 Ag-1. Tin(IV) oxide thioredoxin domain containing 12 Homo sapiens
3 As a result, the Mo-SnO2-graphite composite delivers high reversible capacity of 1317.4 mAhg-1 at 0.2 Ag-1 after 200 cycles with the high initial coulombic efficiency (ICE) of 68.77%, superior rate capacity of 514.0 mAhg-1 even at 5 Ag-1 and long term cycling stability of 759.0 mAhg-1 after 950 cycles at 1.0 Ag-1. Tin(IV) oxide thioredoxin domain containing 12 Homo sapiens