Porosity — 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

Porosity

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

1 measurement group · 4 results

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

N2 adsorption-desorption/BET and pore-size distribution

As-synthesised Ni-CAT nanorods · Powder

Autosorb-IQ/MP surface area analyser; Fig. S1 isotherm and meso-/micro-pore size distribution.

Context
pristine Ni-CAT powder
Measurement source
2; SI p.3 · Results / SI Fig. S1 · Fig. S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET specific surface area~85.8 m2 g-1Text
Approximate
2 · Results · Fig. S1a,b
mesopore distribution rangemesopores span approximately 4-36 nm on Fig. S1b axisFigure Axis
Range
SI p.3 · Fig. S1 · Fig. S1b
micropore distribution peakvisual peak near 1.7 nm in Fig. S1 insetFigure Axis
Approximate
SI p.3 · Fig. S1 · Fig. S1b inset
pore volume~0.43 m3 g-1 in source text; interpreted as ~0.43 cm3 g-1Text
Approximate
2 · Results · Fig. S1a,b