Microscopy Morphology — A novel 2D conductive MOF nanobelts for highly efficient electrosynthesis of hydrogen peroxide

Measurement evidence

Microscopy Morphology

A novel 2D conductive MOF nanobelts for highly efficient electrosynthesis of hydrogen peroxide · Feng Q., Wang W., Yang X. et al. · Nano Research · 2025 · 94907439

3 measurement groups · 5 results

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

SEM and TEM morphology characterisation

Ni-PTC-25 · Powder

Control sample formed at 25 degC; main SEM and SI TEM images.

Context
pristine powder
Measurement source
3 · 3.1 Synthesis and characterization of Ni-PTC · Figure 1d; Figure S1a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni-PTC-25 nanorod length range2 to 5 umText
Range
3 · 3.1 Synthesis and characterization of Ni-PTC · Figure 1d

SEM, AFM, and TEM morphology characterisation

Ni-PTC-60 · Powder

SEM/AFM of nanobelts; AFM thickness profile; SI TEM.

Context
pristine powder
Measurement source
3 · 3.1 Synthesis and characterization of Ni-PTC · Figure 1b,c; Figure S1b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni-PTC-60 nanobelt length range500 nm to 1 umText
Range
3 · 3.1 Synthesis and characterization of Ni-PTC · Figure 1b
Ni-PTC-60 AFM thicknessabout 14 nmText
Approximate
3 · 3.1 Synthesis and characterization of Ni-PTC · Figure 1c
Ni-PTC-60 nanobelt width range100 to 200 nmText
Range
3 · 3.1 Synthesis and characterization of Ni-PTC · Figure 1b

SEM and TEM morphology characterisation

Ni-PTC-80 · Powder

Control sample formed at 80 degC; main SEM and SI TEM images.

Context
pristine powder
Measurement source
3 · 3.1 Synthesis and characterization of Ni-PTC · Figure 1e; Figure S1c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni-PTC-80 nanosphere diameter range500 nm to 2 umText
Range
3 · 3.1 Synthesis and characterization of Ni-PTC · Figure 1e