Title : Laser ablation of pristine Fe foil for constructing a layer-by-layer SiO2/Fe2O3/Fe integrated anode for high cycling-stability lithium-ion batteries.

Pub. Date : 2021 May 5

PMID : 33884393






4 Functional Relationships(s)
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Sentence
Compound Name
Protein Name
Organism
1 Laser ablation of pristine Fe foil for constructing a layer-by-layer SiO2/Fe2O3/Fe integrated anode for high cycling-stability lithium-ion batteries. Iron(III) oxide general transcription factor IIE subunit 1 Homo sapiens
2 With high electron temperature (~5200 K) in the laser irradiation zone, the nanostructured Fe2O3 layer is formed on the Fe foil, resulting in the pristine Fe2O3/Fe anode. Iron(III) oxide general transcription factor IIE subunit 1 Homo sapiens
3 With high electron temperature (~5200 K) in the laser irradiation zone, the nanostructured Fe2O3 layer is formed on the Fe foil, resulting in the pristine Fe2O3/Fe anode. Iron(III) oxide general transcription factor IIE subunit 1 Homo sapiens
4 With high electron temperature (~5200 K) in the laser irradiation zone, the nanostructured Fe2O3 layer is formed on the Fe foil, resulting in the pristine Fe2O3/Fe anode. Iron(III) oxide general transcription factor IIE subunit 1 Homo sapiens