Microscopy Morphology — Catalysis-Assisted Synthesis of Two-Dimensional Conductive Metal–Organic Framework Films with Controllable Orientation

Measurement evidence

Microscopy Morphology

Catalysis-Assisted Synthesis of Two-Dimensional Conductive Metal–Organic Framework Films with Controllable Orientation · Song M., Wu Y., Jia J. et al. · Journal of the American Chemical Society · 2025 · 17058-17067

3 measurement groups · 14 results

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

SEM and XRD growth series

edge-on Cu3(HHTP)2 film from air-saturated precursor · Thin Film

air-saturated Cu3(HHTP)2 growth and edge-on orientation

Context
pristine conductive MOF film
Measurement source
17062 · Results and Discussion · Figure 7; Figure S25
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
air-saturated O2 concentration~0.26 mMText
Approximate
17062 · Results and Discussion · Figure 7; Figure S25
edge-on orientation assignment2D layers perpendicular to substrateText
Qualitative
17062 · Results and Discussion · Figure 7
edge-on growth rate in first 3 h2.9 nm min-1Text
Exact Reported
17062 · Results and Discussion · Figure 7; Figure S25
edge-on growth rate after 5 h1.2 nm min-1Text
Exact Reported
17062 · Results and Discussion · Figure 7; Figure S25
edge-on nanosheet thickness~35 nmText
Approximate
17062 · Results and Discussion · Figure 7; Figure S25

SEM and XRD growth series

face-on Cu3(HHTP)2 growth-series films · Thin Film

O2-saturated Cu3(HHTP)2 growth from 1 min to 4 h

Context
pristine conductive MOF film
Measurement source
17061-17062 · Results and Discussion · Figure 6; Figures S23-S24
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
4 h bottom layer thickness~3500 nmText
Approximate
17061-17062 · Results and Discussion · Figure 6; Figure S24
4 h top nanosheet lateral size500 nmText
Exact Reported
17061-17062 · Results and Discussion · Figure 6; Figure S24
4 h top nanosheet thickness~42 nmText
Approximate
17061-17062 · Results and Discussion · Figure 6; Figure S24
4 h top layer thickness~540 nmText
Approximate
17061-17062 · Results and Discussion · Figure 6; Figure S24
face-on Cu3(HHTP)2 thickness at 120 min2460 nmText
Exact Reported
17061-17062 · Results and Discussion · Figure 6; Figure S24
face-on Cu3(HHTP)2 thickness at 1 minabout 190 nmText
Approximate
17061-17062 · Results and Discussion · Figure 6; Figure S24
face-on average growth rate first 5 min103 nm min-1Text
Exact Reported
17061-17062 · Results and Discussion · Figure 6; Figure S24
face-on average growth rate after 30 min13.7 nm min-1Text
Exact Reported
17061-17062 · Results and Discussion · Figure 6; Figure S24

photography, SEM and XRD

patterned Cu3(HHTP)2 films on varied substrates · Thin Film

Patterned Cu3(HHTP)2 on glass, PDMS, cotton, parylene, PVC, nylon and other supports

Context
pristine conductive MOF film
Measurement source
17061 · Results and Discussion · Figure 5; Figures S18-S22
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
patterned film feature sizesmicrometre to centimetre scaleText
Qualitative
17061 · Results and Discussion · Figure 5