Microscopy Morphology — Self-Powered Infrared Photodetectors with Ultra-High Speed and Detectivity Based on Amorphous Cu-Based MOF Films

Measurement evidence

Microscopy Morphology

Self-Powered Infrared Photodetectors with Ultra-High Speed and Detectivity Based on Amorphous Cu-Based MOF Films · Gao S., Huang Y., Tan J. et al. · ACS Applied Materials and Interfaces · 2023 · 32637-32646

2 measurement groups · 4 results

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

AFM

p-a-Cu-HHTP MOF film on electrospun nanofibres · Thin Film

Supporting AFM image of p-a-Cu-HHTP film morphology.

Context
pristine MOF film
Measurement source
p002 · Supporting Information · Figure S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
AFM labelled fibre feature width130 nmVisual Estimate
Approximate
p002 · Supporting Information · Figure S1

SEM, HRTEM, EDX line scan and elemental mapping

p-a-Cu-HHTP MOF film on electrospun nanofibres · Thin Film

Morphology and elemental distribution of p-a-Cu-HHTP particles grown on electrospun fibres.

Context
pristine MOF film on nanofibre support
Measurement source
p002 · Results and Discussion · Figure 1a-e
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
EDX elemental distributionC, O, and Cu elements are uniformly distributedText
Qualitative
p003 · Results and Discussion · Figure 1b-e
SEM fibre diameter range after p-a-Cu-HHTP growthabout 90 to about 130 nmText
Range
p003 · Results and Discussion · Figure 1a
HRTEM Cu-HHTP nanofibre diameterabout 130 nmText
Approximate
p003 · Results and Discussion · Figure 1b