Microscopy Morphology — Electrochemical properties of uniquely structured Fe2O3 and FeSe2/graphitic-carbon microrods synthesized by applying a metal-organic framework

Measurement evidence

Microscopy Morphology

Electrochemical properties of uniquely structured Fe2O3 and FeSe2/graphitic-carbon microrods synthesized by applying a metal-organic framework · Park S.-K., Kim J.K., Kang Y.C. · Chemical Engineering Journal · 2018 · 2440-2449

3 measurement groups · 4 results

Reported values remain attached to the sample, method, conditions, extraction quality and source location that produced them.

SEM, TEM, XRD, Raman spectroscopy

D-FeSe2/C microrods · Powder

Dense FeSe2/C comparison sample prepared by direct selenization of MIL-88

Context
dense FeSe2/C comparison sample
Measurement source
p009-p010 / SI S-9 to S-10 · Supporting Information · Figs. S10, S8, S11
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
mean primary FeSe2 particle size8.2 nmText
Exact Reported
p006 / journal p2445 · Results & discussion · Figs. S10 and S8 referenced
Raman ID/IG ratio1.05Text
Exact Reported
p006 / journal p2445 · Results & discussion · Fig. S11 referenced

SEM, TEM, HR-TEM, SAED, elemental mapping, XRD

Fe@GC microrods · Powder

Fe@GC microrods after reduction at 450 deg C under H2/Ar

Atmosphere
post-reduction; some air exposure noted
Context
derived conductive intermediate
Measurement source
p004 / journal p2443 · Results & discussion · Fig. 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
HR-TEM d-spacing assigned to metallic Fe (110)0.20 nmText
Exact Reported
p003 / journal p2442 · Results & discussion · Fig. 1e
HR-TEM d-spacing assigned to Fe2O3 (104)0.27 nmText
Exact Reported
p003 / journal p2442 · Results & discussion · Fig. 1e