Electrochemistry Application — Size-Dependent Properties of Solution-Processable Conductive MOF Nanocrystals

Measurement evidence

Electrochemistry Application

Size-Dependent Properties of Solution-Processable Conductive MOF Nanocrystals · Marshall C.R., Dvorak J.P., Twight L.P. et al. · Journal of the American Chemical Society · 2022 · 5784-5794

3 measurement groups · 8 results

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

Cyclic voltammetry of colloidal Fe(TA)2 nanoparticles

Fe(TA)2 colloid CV series in 0.1 M TBAPF6/DMF · Electrode

DMF with 0.1 M TBAPF6; glassy carbon working electrode, silver wire pseudo-reference, platinum counter electrode; scans at 10, 40, 70, 100 and 130 mV/s.

Atmosphere
air-free/anaerobic handling; data collected within hours
Geometry
standard three-electrode cell
Context
pristine Fe(TA)2 colloids
Measurement source
22 · S4 Additional Electrochemical Data · Figure S22 and Table S6
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Colloid CV peak O1 for 16.3 nm Fe(TA)2 at 130 mV/s-0.585 V vs Fc+/0SI Table
Exact Reported
23 · S4 Additional Electrochemical Data · Table S6
Colloid CV peak R1 for 5.5 nm Fe(TA)2 at 130 mV/s-0.669 V vs Fc+/0SI Table
Exact Reported
23 · S4 Additional Electrochemical Data · Table S6

Cyclic voltammetry of drop-cast 16 nm Fe(TA)2 film on glassy carbon

16 nm Fe(TA)2 drop-cast glassy-carbon electrode · Electrode

0.1 M TBAPF6/MeCN and 0.1 M TBABF4/MeCN; scans at 10, 100, 300 and 500 mV/s.

Geometry
particle-coated glassy carbon working electrode, silver wire pseudo-reference, carbon cloth counter electrode
Context
pristine Fe(TA)2 nanoparticle film
Measurement source
5789 · Size-Dependent Redox Chemistry · Figure 5b,c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Peak-to-peak separation for lowest-potential 16 nm Fe(TA)2 redox event at 100 mV/sMarked as a best value within this paper9.2 mVText
Exact Reported
5789 · Size-Dependent Redox Chemistry · Figure 5d
Peak-to-peak separation for second 16 nm Fe(TA)2 redox event at 100 mV/s126 mVText
Exact Reported
5789 · Size-Dependent Redox Chemistry · Figure 5d

Cyclic voltammetry with simultaneous quartz crystal microbalance

16 nm Fe(TA)2 spin-coated QCM film · Electrode

16 nm Fe(TA)2 films on Pt/Ti QCM in 0.1 M TBAPF6 or TBABF4 in MeCN; frequency converted to mass using Sauerbrey relation.

Geometry
Pt/Ti-coated 5 MHz AT-cut QCM working electrode
Context
pristine Fe(TA)2 nanoparticle film
Measurement source
26 · S4 Additional Electrochemical Data · Table S7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Anions per Fe in QCM TBABF4 experimentMarked as a best value within this paper0.4 anions per FeSI Table
Exact Reported
26 · S4 Additional Electrochemical Data · Table S7
Average moles of electrons in QCM TBABF4 experimentMarked as a best value within this paper2.05 x 10-8 mol e-SI Table
Exact Reported
26 · S4 Additional Electrochemical Data · Table S7
Anions per Fe in QCM TBAPF6 experiment0.09 anions per FeSI Table
Exact Reported
26 · S4 Additional Electrochemical Data · Table S7
Average moles of electrons in QCM TBAPF6 experiment7.73 x 10-9 mol e-SI Table
Exact Reported
26 · S4 Additional Electrochemical Data · Table S7