Electrochemistry Application — Highly Electroconductive Metal-Organic Framework: Tunable by Metal Ion Sorption Quantity

Measurement evidence

Electrochemistry Application

Highly Electroconductive Metal-Organic Framework: Tunable by Metal Ion Sorption Quantity · Rouhani F., Rafizadeh-Masuleh F., Morsali A. · Journal of the American Chemical Society · 2019 · 11173-11182

2 measurement groups · 4 results

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

Cyclic voltammetry of ferricyanide redox process

Cd(II)-exposed TMU-60/PVDF paste electrode · Electrode

TMU-60-Cd electrode in 10 mM ferricyanide, 1 M KCl; scan rate 100 mV/s.

Atmosphere
aqueous electrolyte
Geometry
paste electrode
Context
fast electron-transfer validation
Measurement source
S-8 · Figure S10
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
ferricyanide concentration for redox validation10 mM0.01 MText
Exact Reported
8 · Direct Current I-V Measurement · Figure S10
ferricyanide CV scan rate100 mV/s0.1 V/sText
Exact Reported
8 · Direct Current I-V Measurement · Figure S10

Open circuit potential versus Cd(II) exposure time

Cd(II)-exposed TMU-60/PVDF paste electrode · Electrode

TMU-60 electrode exposed to Cd(II); OCP monitored to 20 min and longer.

Atmosphere
aqueous
Geometry
paste electrode
Context
Cd(II) penetration and completion
Measurement source
7 · Electrochemical Studies · Figure 7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
open circuit potential after 20 min Cd(II) immersion-6 mV-0.006 VText
Rounded Reported
7 · Electrochemical Studies · Figure 7
initial open circuit potential40 mV0.04 VText
Rounded Reported
7 · Electrochemical Studies · Figure 7