Microscopy Morphology — Giant Enhancement of Carrier Mobility in Bimetallic Coordination Polymers

Measurement evidence

Microscopy Morphology

Giant Enhancement of Carrier Mobility in Bimetallic Coordination Polymers · Dhara B., Kumar V., Gupta K. et al. · ACS Omega · 2017 · 4488-4493

3 measurement groups · 5 results

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

FESEM

Cr-BTC xerogel pressed pellet · Pellet

Morphological imaging of xerogel.

Context
pristine monometallic control
Measurement source
p002 · Results and Discussion · Figure 2b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cr-BTC morphologyglobular/fibrous patternsText
Qualitative
p002 · Results and Discussion · Figure 2b

FESEM

Fe-BTC xerogel pressed pellet · Pellet

Morphological imaging of xerogel.

Context
pristine monometallic control
Measurement source
p002 · Results and Discussion · Figure 2a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Fe-BTC morphologymicrometer-sized irregular yet crystalline blocksText
Qualitative
p002 · Results and Discussion · Figure 2a

FESEM, TEM and SAED

Fe-BTC-Cr 1:1 xerogel pressed pellet · Pellet

FESEM, TEM and selected-area electron diffraction of bimetallic xerogel.

Context
pristine bimetallic framework
Measurement source
p002 · Results and Discussion · Figure 2c-d; Figure S2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Fe-BTC-Cr morphologyregular cuboids closely resembling Fe-BTC morphologyText
Qualitative
p002 · Results and Discussion · Figure 2c
SAED crystallinitySAED pattern indicates high degree of crystallinityText
Qualitative
p002 · Results and Discussion · Figure 2d
Layered structure observed by TEMlayered structure clearly visualizedCaption
Qualitative
p002 · Supporting Information · Figure S2