Electrochemistry Application — Synthesis and Electric Properties of a Two-Dimensional Metal-Organic Framework Based on Phthalocyanine

Measurement evidence

Electrochemistry Application

Synthesis and Electric Properties of a Two-Dimensional Metal-Organic Framework Based on Phthalocyanine · Nagatomi H., Yanai N., Yamada T. et al. · Chemistry - A European Journal · 2018 · 1806-1810

4 measurement groups · 20 results

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

cyclic voltammetry

Cu-CuPc/carbon black/PTFE cathode on stainless mesh · Electrode

2.0-4.4 V vs Li/Li+; scan rate 1 mV s-1; Li foil counter electrode; 1 M LiPF6 in EC/DMC (1:2)

Temperature
room temperature
Atmosphere
Ar-filled glove box for cell fabrication
Geometry
LIB test cell with composite Cu-CuPc cathode, lithium foil anode, glass separator
Context
composite cathode containing pristine Cu-CuPc framework
Measurement source
1808 · main text · Figure 4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
broad CV redox peaksapproximately 3.0 V vs Li/Li+Text
Approximate
1808 · main text · Figure 4
CV scan rate1 mV s-10.001 V s-1Caption
Exact Reported
1808 · Figure 4 caption · Figure 4

galvanostatic cycling stability

Cu-CuPc/carbon black/PTFE cathode on stainless mesh · Electrode

0.4 C, 0.13 A g-1; 2.0-4.4 V vs Li/Li+; repeated up to 200 cycles

Temperature
room temperature
Atmosphere
Ar-filled glove box for cell fabrication
Geometry
LIB test cell with composite Cu-CuPc cathode
Context
composite cathode containing pristine Cu-CuPc framework
Measurement source
1809 · main text · Figure 5b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
coulombic efficiency over repeated cyclingMarked as a best value within this paper>95% for repeated charge/discharge up to 200 cyclesText
Approximate
1809 · main text · Figure 5b
discharge capacity at 200th cycleapproximately 53 mAh g-1 at 200 cyclesvisual estimate from Figure 5bFigure Axis
Approximate
1809 · Figure 5b · Figure 5b
maximum discharge capacity during 0.4 C cycling55 mAh g-1 at around 70th cycleText
Rounded Reported
1809 · main text · Figure 5b

galvanostatic charge/discharge

Cu-CuPc/carbon black/PTFE cathode on stainless mesh · Electrode

0.04 C, 13 mA g-1; 2.0-4.4 V vs Li/Li+; cut-off time 1440 min discharge and 1440 min charge

Temperature
room temperature
Atmosphere
Ar-filled glove box for cell fabrication
Geometry
LIB test cell with composite Cu-CuPc cathode
Context
composite cathode containing pristine Cu-CuPc framework
Measurement source
1808-1809 · main text · Figure 5a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
charge capacity at 0.04 CMarked as a best value within this paper151 mAh g-1Text
Exact Reported
1808 · main text · Figure 5a
charge/discharge plateau voltagesmodest plateau regions at 3.0 and 3.8 VText
Approximate
1808 · main text · Figure 5a
discharge capacity at 0.04 CMarked as a best value within this paper128 mAh g-1Text
Exact Reported
1808 · main text · Figure 5a
redox electron count from observed capacityn = 4.9Calculated From Reported
Rounded Reported
1808 · main text · Figure 5a
theoretical capacity assuming 10 electrons304.3 mAh g-1Text
Exact Reported
S2 · Discharge and charge measurement
fraction of theoretical capacity available at 0.04 C49%Calculated From Reported
Rounded Reported
1808 · main text · Figure 5a

rate-dependent galvanostatic discharge/charge

Cu-CuPc/carbon black/PTFE cathode on stainless mesh · Electrode

various C-rates from 0.04 C (13 mA g-1) to 17 C (5.2 A g-1), 2.0-4.4 V vs Li/Li+

Temperature
room temperature
Atmosphere
Ar-filled glove box for cell fabrication
Geometry
LIB test cell with composite Cu-CuPc cathode
Context
composite cathode containing pristine Cu-CuPc framework
Measurement source
S5 · Figure S5 caption · Figure S5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
discharge capacity at 0.04 C from rate plotapproximately 128 mAh g-1 at 0.04 Cvisual estimate consistent with text-reported Figure 5a valueFigure Axis
Approximate
S5 · Figure S5 · Figure S5
discharge capacity at 0.09 Capproximately 108 mAh g-1 at 0.09 Cvisual estimate from Figure S5Figure Axis
Approximate
S5 · Figure S5 · Figure S5
discharge capacity at 0.2 Capproximately 91 mAh g-1 at 0.2 Cvisual estimate from Figure S5Figure Axis
Approximate
S5 · Figure S5 · Figure S5
discharge capacity at 0.4 Capproximately 80 mAh g-1 at 0.4 C in rate testvisual estimate from Figure S5Figure Axis
Approximate
S5 · Figure S5 · Figure S5
discharge capacity at 0.9 Capproximately 69 mAh g-1 at 0.9 Cvisual estimate from Figure S5Figure Axis
Approximate
S5 · Figure S5 · Figure S5
discharge capacity at 17 Capproximately 17 mAh g-1 at 17 Cvisual estimate from Figure S5Figure Axis
Approximate
S5 · Figure S5 · Figure S5
discharge capacity at 2 Capproximately 57 mAh g-1 at 2 Cvisual estimate from Figure S5Figure Axis
Approximate
S5 · Figure S5 · Figure S5
discharge capacity at 4 Capproximately 45 mAh g-1 at 4 Cvisual estimate from Figure S5Figure Axis
Approximate
S5 · Figure S5 · Figure S5
discharge capacity at 9 Capproximately 31 mAh g-1 at 9 Cvisual estimate from Figure S5Figure Axis
Approximate
S5 · Figure S5 · Figure S5