Microscopy Morphology — Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitor

Measurement evidence

Microscopy Morphology

Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitor · Jiang H., Xian J., Hu R. et al. · Chemical Engineering Journal · 2023 · 140804

4 measurement groups · 7 results

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

SEM, TEM, HRTEM and EDS mapping

Zn,Ni-CAT-T4 · Electrode

Morphology and elemental distribution of Zn,Ni-CAT nanorods grown on carbon cloth.

Geometry
Carbon cloth supported nanorod electrode
Context
Target microwave-treated mixed-metal MOF compared with pristine Ni-CAT morphology through SI reference.
Measurement source
4 · 3.1. Synthesis and characterization · Figure 2a-e
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Original Ni-CAT (100) lattice spacing1.77 nmText
Exact Reported
4 · 3.1. Synthesis and characterization · Figure 2d
Zn,Ni-CAT (100) lattice spacing1.85 nmText
Exact Reported
4 · 3.1. Synthesis and characterization · Figure 2d
Zn,Ni-CAT morphologyZn,Ni-CAT nanorods grow uniformly on the surface of carbon fiberText
Qualitative
4 · 3.1. Synthesis and characterization · Figure 2a-b

SEM imaging

Zn,Ni-CAT treated for 25 s · Electrode

Morphology comparison for overlong microwave reaction times shown in SI Figure S7.

Context
Mixed-metal Zn,Ni-CAT on carbon cloth compared with T1-T4 pulse-series samples.
Measurement source
5 · Fig. S1 to S23 · Figure S7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Zn,Ni-CAT 25 s morphologypartially damaged at 25 sText
Qualitative
6 · 3.3. Optimization of bimetallic MOFs by microwave · Figure S7

SEM imaging

Zn,Ni-CAT treated for 60 s · Electrode

Morphology comparison for overlong microwave reaction times shown in SI Figure S7.

Context
Mixed-metal Zn,Ni-CAT on carbon cloth compared with T1-T4 pulse-series samples.
Measurement source
5 · Fig. S1 to S23 · Figure S7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Zn,Ni-CAT 60 s morphologysignificantly collapsed at 60 sText
Qualitative
6 · 3.3. Optimization of bimetallic MOFs by microwave · Figure S7

Optical observation and EDS mapping/spectrum of glass and carbon cloth microwave-discharge controls

Glass after Zn-wire microwave discharge control · Thin Film

Control experiments using glass or carbon cloth under comparable Zn-wire microwave discharge conditions.

Atmosphere
Ar/inert microwave discharge context
Geometry
Flat glass and carbon cloth substrates
Context
Mechanistic control for deposition versus lattice doping.
Measurement source
5 · 3.2. Microwave synthesis mechanism · Figure 3b-e
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Carbon-cloth control Zn depositionNone of Zinc; carbon 100 wt%Figure Axis
Qualitative
5 · Figure 3 · Figure 3e
Glass-control Zn content after microwave dischargeZn 30.45 wt%Figure Axis
Rounded Reported
5 · Figure 3 · Figure 3c