Microscopy Morphology — Effects of Transition Metals on Metal-Octaaminophthalocyanine-Based 2D Metal-Organic Frameworks

Measurement evidence

Microscopy Morphology

Effects of Transition Metals on Metal-Octaaminophthalocyanine-Based 2D Metal-Organic Frameworks · Chen G., Li Z., Huang Z. et al. · ACS Nano · 2023 · 9611-9621

1 measurement group · 6 results

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

SEM particle-size analysis over more than 150 particles; FE-SEM Magellan 400 XHR

Cu-CuOAPc powder and cold-pressed pellet · Powder

Multicrystalline particle sizes for five main MOFs and Ni-NiOAPc

Atmosphere
vacuum
Geometry
powder on SEM stub
Context
pristine framework powders
Measurement source
9614-9617 · Results / Particle Size and Crystallinity; Highly Conductive Ni-NiOAPc · Figure 4; Figure 7c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
SEM multicrystalline particle size, Co-CuOAPc~135 +/- 47 nm+/- 47 nmText
Approximate
9614 · Results / Particle Size and Crystallinity · Figure 4; Figure 7c
SEM multicrystalline particle size, Cu-CoOAPc~103 +/- 37 nm+/- 37 nmText
Approximate
9614 · Results / Particle Size and Crystallinity · Figure 4; Figure 7c
SEM multicrystalline particle size, Cu-CuOAPc~86 +/- 31 nm+/- 31 nmText
Approximate
9614 · Results / Particle Size and Crystallinity · Figure 4; Figure 7c
SEM multicrystalline particle size, Cu-NiOAPc~61 +/- 14 nm+/- 14 nmText
Approximate
9614 · Results / Particle Size and Crystallinity · Figure 4; Figure 7c
SEM multicrystalline particle size, Ni-CuOAPc~260 +/- 99 nm+/- 99 nmText
Approximate
9614 · Results / Particle Size and Crystallinity · Figure 4; Figure 7c
SEM multicrystalline particle size, Ni-NiOAPcMarked as a best value within this paper~336 +/- 101 nm+/- 101 nmText
Approximate
9617 · Results / Particle Size and Crystallinity · Figure 4; Figure 7c