Microscopy Morphology — Employing Triphenylene-Based, Layered, Conductive Metal-Organic Framework Materials as Electrochemical Sensors for Nitric Oxide in Aqueous Media

Measurement evidence

Microscopy Morphology

Employing Triphenylene-Based, Layered, Conductive Metal-Organic Framework Materials as Electrochemical Sensors for Nitric Oxide in Aqueous Media · Ambrogi E.K., Li Y., Chandra P. et al. · ACS Sensors · 2025 · 553-562

1 measurement group · 3 results

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

Scanning electron microscopy (SEM)

Ni3(HHTP)2 microcrystalline powder · Powder

Powder morphology for Co3(HHTP)2, Ni3(HHTP)2, Cu3(HHTP)2 and Zn3(HHTP)2.

Geometry
powder samples
Context
pristine powders
Measurement source
555 · Characterization of HHTP MOFs · Figures 1d-g and S3-S6
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu3(HHTP)2 and Co3(HHTP)2 nanorod diameterapproximately 0.5 um500 nmapproximateText
Approximate
555 · Characterization of HHTP MOFs · Figures 1d-g and S3-S6
Ni3(HHTP)2 and Zn3(HHTP)2 nanorod diameter50-100 nmrangeText
Range
555 · Characterization of HHTP MOFs · Figures 1d-g and S3-S6
General powder morphologyAll MOFs showed generally rod-like morphology.Text
Qualitative
555 · Characterization of HHTP MOFs · Figures 1d-g and S3-S6