Microscopy Morphology — Construction of 1D conductive Ni-MOF nanorods with fast Li+ kinetic diffusion and stable high-rate capacities as an anode for lithium ion batteries

Measurement evidence

Microscopy Morphology

Construction of 1D conductive Ni-MOF nanorods with fast Li+ kinetic diffusion and stable high-rate capacities as an anode for lithium ion batteries · Guo L., Sun J., Sun X. et al. · Nanoscale Advances · 2019 · 4688-4691

2 measurement groups · 4 results

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

FESEM, TEM, STEM-EDS elemental mapping

As-synthesised Ni-CAT nanorods · Powder

As-synthesised Ni-CAT nanorods; FESEM/TEM scale bars 500 nm and 50 nm; EDS maps for Ni, O and C.

Context
pristine Ni-CAT powder
Measurement source
1-2 · Results · Fig. 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
element distributioneven distribution of Ni, O and C throughout the nanorodsQualitative
Qualitative
1 · Results · Fig. 1c-f
nanorod diameter~50 nmText
Approximate
1 · Results · Fig. 1b
nanorod length~500 nmText
Approximate
1 · Results · Fig. 1a

TEM/STEM-EDS after 300 cycles

Ni-CAT nanorod lithium-ion battery anode electrode · Electrode

TEM, STEM and Ni/C/O mapping after 300 cycles.

Context
Ni-CAT composite LIB electrode after 300 cycles
Measurement source
3; SI p.9 · Results / SI Fig. S7 · Fig. S7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
post-300-cycle morphology/structureab plane remains stable; c axis somewhat damaged; nanorods further shortenedText
Qualitative
3 · Results · Fig. S7