Microscopy Morphology — A porous proton-relaying metal-organic framework material that accelerates electrochemical hydrogen evolution

Measurement evidence

Microscopy Morphology

A porous proton-relaying metal-organic framework material that accelerates electrochemical hydrogen evolution · Hod I., Deria P., Bury W. et al. · Nature Communications · 2015 · 8304

1 measurement group · 2 results

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

SEM and EDS cross-sectional mapping

NU-1000_Ni-S · Electrode

Top-view and cross-sectional SEM of NU-1000_Ni-S electrode after 2 min Ni-S deposition.

Geometry
FTO-supported thin-film electrode
Context
composite hybrid
Measurement source
3 · Results - Electrocatalyst synthesis · Figures 2-3; Supplementary Figure 3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni and S distribution in MOF rodsonly trace amount of nickel and sulfur in extended MOF rod portionsText
Qualitative
2-3 · Results - Electrocatalyst synthesis · Supplementary Figure 3
NU-1000_Ni-S morphologyhexagonal rod-shaped NU-1000 crystals retained on FTOCaption
Qualitative
3 · Figure caption · Figure 2