Electrochemistry Application — Cu─X Bonds Regulated Conduction and Polarization Loss in Conductive Metal-Organic Framework Under Electromagnetic Field

Measurement evidence

Electrochemistry Application

Cu─X Bonds Regulated Conduction and Polarization Loss in Conductive Metal-Organic Framework Under Electromagnetic Field · Cheng S., Zhou Q., Sheng D. et al. · Advanced Science · 2025 · e08379

3 measurement groups · 3 results

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

Nyquist electrochemical impedance plot; CHI 660E three-electrode cell

Cu3(HHTP)2-coated glassy carbon electrode · Electrode

Sample-coated glassy carbon working electrode; saturated Ag/AgCl reference; Pt wire counter; 1 M NaCl aqueous electrolyte.

Geometry
three-electrode cell, glassy carbon working electrode
Context
pristine framework coated on electrode
Measurement source
9 · Experimental Section
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Nyquist charge-transfer resistance interpretationNyquist plots support that strong pi-d conjugation significantly lowers charge-transfer resistance across the three c-MOFs; no numeric Rct values reported.Qualitative
Qualitative
18 · Section 9 · Figure S14

Nyquist electrochemical impedance plot; CHI 660E three-electrode cell

Cu3(HITP)2-coated glassy carbon electrode · Electrode

Sample-coated glassy carbon working electrode; saturated Ag/AgCl reference; Pt wire counter; 1 M NaCl aqueous electrolyte.

Geometry
three-electrode cell, glassy carbon working electrode
Context
pristine framework coated on electrode
Measurement source
9 · Experimental Section
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Nyquist charge-transfer resistance interpretationNyquist plots support that strong pi-d conjugation significantly lowers charge-transfer resistance across the three c-MOFs; no numeric Rct values reported.Qualitative
Qualitative
18 · Section 9 · Figure S14

Nyquist electrochemical impedance plot; CHI 660E three-electrode cell

Cu3(THT)2-coated glassy carbon electrode · Electrode

Sample-coated glassy carbon working electrode; saturated Ag/AgCl reference; Pt wire counter; 1 M NaCl aqueous electrolyte.

Geometry
three-electrode cell, glassy carbon working electrode
Context
pristine framework coated on electrode
Measurement source
9 · Experimental Section
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Nyquist charge-transfer resistance interpretationNyquist plots support that strong pi-d conjugation significantly lowers charge-transfer resistance across the three c-MOFs; no numeric Rct values reported.Qualitative
Qualitative
18 · Section 9 · Figure S14