Controllable engineering magnetite nanoparticles dispersed in a hierarchical amylose derived carbon and reduced graphene oxide framework for lithium-ion storage
“…The bands at 2852 cm −1 , 1097 cm −1 and 1636 cm −1 are attributed to the stretching vibrational peaks of C-H, C-O-C and CC, while the peaks at 1636 and 1386 cm −1 belong to aromatic CC bonds and C-OH bonds, respectively. 35,36 Moreover, the characteristic peak at 532 cm −1 is related to Fe-O stretching vibrations.…”
As an anodic candidate material for lithium-ion batteries (LIBs), magnetite (Fe3O4) has the advantages of high theoretical capacity (926 mAh·g-1), environmental friendliness, and natural richness. The critical issues of inferior...
“…The bands at 2852 cm −1 , 1097 cm −1 and 1636 cm −1 are attributed to the stretching vibrational peaks of C-H, C-O-C and CC, while the peaks at 1636 and 1386 cm −1 belong to aromatic CC bonds and C-OH bonds, respectively. 35,36 Moreover, the characteristic peak at 532 cm −1 is related to Fe-O stretching vibrations.…”
As an anodic candidate material for lithium-ion batteries (LIBs), magnetite (Fe3O4) has the advantages of high theoretical capacity (926 mAh·g-1), environmental friendliness, and natural richness. The critical issues of inferior...
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