Microscopy Morphology — Metal organic frameworks (MOFs) as potential anode materials for improving power generation from algal biophotovoltaic (BPV) platforms

Measurement evidence

Microscopy Morphology

Metal organic frameworks (MOFs) as potential anode materials for improving power generation from algal biophotovoltaic (BPV) platforms · Thong C.-H., Priyanga N., Ng F.-L. et al. · Catalysis Today · 2022 · 419-427

2 measurement groups · 3 results

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

SEM (Quanta 450 FEG)

as-formulated Cu-MOF · Powder

Morphological characterisation of as-prepared Cu-MOF.

Geometry
powder morphology
Context
pristine Cu-MOF control
Measurement source
p003-p004 / journal pages 421-422 · 2.8; 3.1 Morphological Analysis · Fig. 2a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu-MOF mean nanoflake diameterca. 1.6 umText
Approximate
p003 / journal page 421 · 3.1 Morphological Analysis · Fig. 2
Cu-MOF mean nanoflake thicknessca. 300 nmText
Approximate
p003 / journal page 421 · 3.1 Morphological Analysis · Fig. 2

SEM (Quanta 450 FEG)

as-formulated Cu-Ni MOF · Powder

Morphological characterisation of as-prepared Cu-Ni MOF.

Geometry
powder morphology
Context
mixed-metal target MOF
Measurement source
p004 / journal page 422 · 3.1 Morphological Analysis · Fig. 2b,c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu-Ni MOF morphology relative to Cu-MOFshape and size not amended relative to monometallic Cu-MOFText
Qualitative
p004 / journal page 422 · 3.1 Morphological Analysis · Fig. 2