Electrochemistry Application — Increased Electrical Conductivity in a Mesoporous Metal-Organic Framework Featuring Metallacarboranes Guests

Measurement evidence

Electrochemistry Application

Increased Electrical Conductivity in a Mesoporous Metal-Organic Framework Featuring Metallacarboranes Guests · Kung C.-W., Otake K., Buru C.T. et al. · Journal of the American Chemical Society · 2018 · 3871-3875

4 measurement groups · 24 results

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

chronopotentiometric charge-discharge

spin-coated Mn-AIM-NiCB@NU-1000 thin film · Thin Film

Spin-coated Mn-AIM-NiCB@NU-1000 film in 0.1 M Na2SO4(aq); specific capacitance and addressable Mn fraction calculated from discharge curves and ICP/UV-vis loading.

Geometry
FTO working electrode; Pt coil counter; Ag/AgCl/KCl (3 M) reference; 1 V potential window
Context
Conductive NiCB@NU-1000 scaffold application sample.
Measurement source
S18-S20 · S9 · Figure S11 and Table S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Mn loading per film area for Mn-AIM-NiCB@NU-10001.6 x 10-7 mol/cm2Text
Rounded Reported
S19 · S9
Addressable Mn fraction at 0.02 mA/cm224.9%SI Table
Exact Reported
S20 · S9 · Table S3
Addressable Mn fraction at 0.04 mA/cm220.1%SI Table
Exact Reported
S20 · S9 · Table S3
Addressable Mn fraction at 0.08 mA/cm216.0%SI Table
Exact Reported
3873 · results · Table S3
Addressable Mn fraction at 0.16 mA/cm212.0%SI Table
Exact Reported
S20 · S9 · Table S3
Specific capacitance at 0.02 mA/cm2Marked as a best value within this paper276 F/gMnO2SI Table
Exact Reported
3873 · results · Figure 4d and Table S3
Specific capacitance at 0.04 mA/cm2224 F/gMnO2SI Table
Exact Reported
S20 · S9 · Table S3
Specific capacitance at 0.08 mA/cm2178 F/gMnO2SI Table
Exact Reported
S20 · S9 · Table S3
Specific capacitance at 0.16 mA/cm2133 F/gMnO2SI Table
Exact Reported
S20 · S9 · Table S3
Specific capacitance including whole electrode material69 F/gText
Exact Reported
3875 · references/notes · note 29

chronopotentiometric charge-discharge

spin-coated Mn-AIM-NU-1000 thin film · Thin Film

Spin-coated Mn-AIM-NU-1000 film in 0.1 M Na2SO4(aq); specific capacitance and addressable Mn fraction calculated from discharge curves and ICP/UV-vis loading.

Geometry
FTO working electrode; Pt coil counter; Ag/AgCl/KCl (3 M) reference; 1 V potential window
Context
Insulating NU-1000 scaffold control.
Measurement source
S18-S20 · S9 · Figure S11 and Table S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Mn loading per film area for Mn-AIM-NU-10001.2 x 10-7 mol/cm2Text
Rounded Reported
S19 · S9
Addressable Mn fraction at 0.02 mA/cm21.9%SI Table
Exact Reported
S20 · S9 · Table S3
Addressable Mn fraction at 0.04 mA/cm21.7%SI Table
Exact Reported
S20 · S9 · Table S3
Addressable Mn fraction at 0.08 mA/cm21.4%SI Table
Exact Reported
S20 · S9 · Table S3
Addressable Mn fraction at 0.16 mA/cm21.1%SI Table
Exact Reported
S20 · S9 · Table S3
Specific capacitance at 0.02 mA/cm221 F/gMnO2SI Table
Exact Reported
3873 · results · Figure 4d and Table S3
Specific capacitance at 0.04 mA/cm219 F/gMnO2SI Table
Exact Reported
S20 · S9 · Table S3
Specific capacitance at 0.08 mA/cm215 F/gMnO2SI Table
Exact Reported
S20 · S9 · Table S3
Specific capacitance at 0.16 mA/cm212 F/gMnO2SI Table
Exact Reported
S20 · S9 · Table S3

cyclic voltammetry

spin-coated NiCB@NU-1000 thin film · Thin Film

CV of spin-coated NU-1000, NiCB@NU-1000, Mn-AIM-NU-1000, and Mn-AIM-NiCB@NU-1000 thin films in 0.1 M Na2SO4(aq), measured at 25 mV/s.

Geometry
FTO substrate working electrode; Pt coil counter electrode; Ag/AgCl/KCl (3 M) reference
Context
Bare scaffolds compared with Mn-oxide-loaded samples.
Measurement source
3873 · results · Figure 4a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Bare scaffold capacitancenegligible capacitance from NU-1000 and NiCB@NU-1000 scaffoldsQualitative
Qualitative
3873 · results · Figure 4a

long-term chronopotentiometric cycling

spin-coated Mn-AIM-NiCB@NU-1000 thin film · Thin Film

2000 charge-discharge cycles at 0.08 mA/cm2 in 0.1 M Na2SO4(aq); post-cycling XRD and ICP-OES.

Geometry
spin-coated Mn-AIM-NiCB@NU-1000 thin film on FTO
Context
Conductive scaffold application durability test.
Measurement source
S20-S21 · S10 · Figure S12
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Long-term cycling duration2000 cyclesText
Exact Reported
S20 · S10 · Figure S12
Capacitance retention after 200 cyclesabout 65% of initial value after 200 cyclesText
Approximate
S20 · S10 · Figure S12b
Post-cycling Mn loading6.7 Mn on each zirconium-based nodeText
Exact Reported
S21 · S10
Post-cycling Ni loading0.71 Ni on each zirconium-based nodeText
Exact Reported
S21 · S10