Microscopy Morphology — Electrosynthesis of a Nickel-Based Conductive Metal-Organic Framework with Controlled Morphology for Enhanced Capacitance

Measurement evidence

Microscopy Morphology

Electrosynthesis of a Nickel-Based Conductive Metal-Organic Framework with Controlled Morphology for Enhanced Capacitance · Stodolka M., Choi J.Y., Fang X. et al. · ACS Materials Letters · 2024 · 49-55

1 measurement group · 6 results

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

SEM and TEM morphology imaging

Ni-HHTP comparative sample set · Unknown

Time-dependent SEM for electrosynthesis, SEM/TEM images of flower, disc and bulk morphologies.

Geometry
NF-supported and detached samples
Context
Pristine Ni-HHTP samples.
Measurement source
51 · Results · Figure 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Bulk Ni-HHTP morphologyRod-shaped bulk Ni-HHTP observed by SEMCaption
Qualitative
S13 · Structural Characterizations · Figure S11
Disc dense stacked morphologyCircular plates in Ni-HHTP-Disc are dense and stacked, shielding portions from electrolyteText
Qualitative
52 · Results
Disc morphology stabilisationNi-HHTP-Disc shows small round crystallites after 30 min and no significant change after 1 hText
Qualitative
51 · Results · Figure 2c
Flower lamellar/free-space morphologyFree space between Ni-HHTP-Flower petals allows 2D Ni-HHTP to remain accessibleText
Qualitative
52 · Results
Flower morphology fully grownNi-HHTP-Flower nanoparticles fully grown after 2 hText
Exact Reported
51 · Results · Figure 2b
Flower growth at 30 minSmall circular crystallites after 30 minText
Qualitative
51 · Results · Figure 2b