Spectroscopy — Enhancing electrochemical hydrogen storage in nickel-based metal-organic frameworks (MOFs) through zinc and cobalt doping as bimetallic MOFs

Measurement evidence

Spectroscopy

Enhancing electrochemical hydrogen storage in nickel-based metal-organic frameworks (MOFs) through zinc and cobalt doping as bimetallic MOFs · Kashani F.Z., Mohsennia M. · International Journal of Hydrogen Energy · 2025 · 348-357

3 measurement groups · 5 results

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

FT-IR spectroscopy, KBr pellets

Co-Ni(TPA)-2 · Powder

Functional group and Co-O bond assessment.

Geometry
powder/KBr pellet
Context
Co-doped Ni(TPA)
Measurement source
352 · 3.1. Characterization of synthesized MOFs · Fig. 5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-O vibration peak558 cm-1Text
Rounded Reported
351 · 3.1. Characterization of synthesized MOFs · Fig. 5

FT-IR spectroscopy, KBr pellets, Shimadzu Varian 4300

Ni(TPA) · Powder

Functional group and coordination assessment.

Geometry
powder/KBr pellet
Context
pristine Ni(TPA)
Measurement source
351 · 2.4. Techniques of characterizations · Fig. 5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Asymmetric COO stretching peak1580 cm-1Text
Rounded Reported
350 · 3.1. Characterization of synthesized MOFs · Fig. 5
Symmetric COO stretching peak1400 cm-1Text
Rounded Reported
350 · 3.1. Characterization of synthesized MOFs · Fig. 5
OH stretching peaknear 3450 cm-1Text
Approximate
350 · 3.1. Characterization of synthesized MOFs · Fig. 5

FT-IR spectroscopy, KBr pellets

Zn-Ni(TPA)-2 · Powder

Functional group and Zn-O bond assessment.

Geometry
powder/KBr pellet
Context
Zn-doped Ni(TPA)
Measurement source
352 · 3.1. Characterization of synthesized MOFs · Fig. 5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Zn-O vibration peak437 cm-1Text
Rounded Reported
351 · 3.1. Characterization of synthesized MOFs · Fig. 5