Electrochemistry Application — Multiscale optimization of Li-ion diffusion in solid lithium metal batteries: Via ion conductive metal-organic frameworks

Measurement evidence

Electrochemistry Application

Multiscale optimization of Li-ion diffusion in solid lithium metal batteries: Via ion conductive metal-organic frameworks · Zhang Q., Li D., Wang J. et al. · Nanoscale · 2020 · 6976-6982

8 measurement groups · 34 results

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

Galvanostatic charge/discharge

Li|flexible LCMOF-1 composite SE|LiFePO4 cell · Electrode

C-rate performance of Li|flexible LCMOF-1 composite SE|LFP cell with different Li-IL contents.

Temperature
298
Geometry
Li|SE|LiFePO4 half cell
Context
flexible composite SE
Measurement source
p005 / 6980 · Results and discussion · Fig. 4a; Fig. S15
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
0.5 Li-IL SSB discharge capacity at 10C80 mA h g^-1Text
Exact Reported
p005 / 6980 · Results and discussion · Fig. S15
1C capacity increase with Li-ILfrom 85 to 135 mA h g^-1Text
Range
p005 / 6980 · Results and discussion · Fig. 4a
0.5 Li-IL SSB discharge capacity at 2C135 mA h g^-1Text
Exact Reported
p005 / 6980 · Results and discussion · Fig. S15
0.5 Li-IL SSB discharge capacity at 5C100 mA h g^-1Text
Exact Reported
p005 / 6980 · Results and discussion · Fig. S15

Galvanostatic cycling

Li|flexible LCMOF-1 composite SE|LiFePO4 cell · Electrode

Cycling of Li|flexible LCMOF-1 composite SE|LFP cells at 0.1C and 2C at room temperature.

Temperature
298
Geometry
Li|SE|LiFePO4 half cell
Context
optimised flexible composite SE
Measurement source
p005 / 6980 · Results and discussion · Fig. 4c,d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
0.1C capacityMarked as a best value within this paper157 mA h g^-1Text
Exact Reported
p006 / 6981 · Conclusions · Fig. 4c
0.1C retention after 100 cyclesMarked as a best value within this paper99%Text
Exact Reported
p005 / 6980 · Results and discussion · Fig. 4c
2C discharge capacity after 500 cyclesMarked as a best value within this paper115 mA h g^-1Text
Exact Reported
p005 / 6980 · Results and discussion · Fig. 4d
2C initial discharge capacity119 mA h g^-1Text
Exact Reported
p005 / 6980 · Results and discussion · Fig. 4d
2C retention after 500 cycles96.6%Text
Exact Reported
p005 / 6980 · Results and discussion · Fig. 4d

Galvanostatic cycling

Li|flexible LCMOF-1 composite SE|LiFePO4 cell · Electrode

Wide-temperature C-rate/cycling from -20 to 60 deg C.

Geometry
Li|SE|LiFePO4 half cell
Context
optimised flexible composite SE
Measurement source
p006 / 6981 · Results and discussion · Fig. 4e-g
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
discharge capacity at 30 deg C, 1C135 mA h g^-1Text
Exact Reported
p006 / 6981 · Results and discussion · Fig. 4e
capacity after 500 cycles at 60 deg C, 1CMarked as a best value within this paper150 mA h g^-1Text
Exact Reported
p006 / 6981 · Results and discussion · Fig. 4g
discharge capacity at 60 deg C, 1CMarked as a best value within this paper162 mA h g^-1Text
Exact Reported
p006 / 6981 · Results and discussion · Fig. 4e
retention after 500 cycles at 60 deg C, 1C95.5%Text
Exact Reported
p006 / 6981 · Results and discussion · Fig. 4g
discharge capacity at -20 deg C, 0.05C100 mA h g^-1Text
Exact Reported
p006 / 6981 · Results and discussion · Fig. 4e
stable cycling capacity at -20 deg C, 0.05C104 mA h g^-1Text
Exact Reported
p006 / 6981 · Conclusions · Fig. 4f

Galvanostatic charge/discharge

Li|LCMOF-1/PVDF-HFP SE|LiFePO4 cell · Electrode

Li|SE|LFP cell with 90 wt% LCMOF-1/10 wt% PVDF-HFP SE; C-rate and 1C cycling at room temperature.

Temperature
298
Geometry
Li|SE|LiFePO4 half cell
Context
LCMOF-1/PVDF-HFP composite SE
Measurement source
p004 / 6979 · Results and discussion · Fig. 1e,f
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
C-rate discharge capacity at 0.2C160 mA h g^-1Text
Exact Reported
p004 / 6979 · Results and discussion · Fig. 1e
C-rate discharge capacity at 0.5C156 mA h g^-1Text
Exact Reported
p004 / 6979 · Results and discussion · Fig. 1e
C-rate discharge capacity at 1C144 mA h g^-1Text
Exact Reported
p004 / 6979 · Results and discussion · Fig. 1e
C-rate discharge capacity at 2C98 mA h g^-1Text
Exact Reported
p004 / 6979 · Results and discussion · Fig. 1e
1C discharge capacity after 300 cycles139 mA h g^-1Text
Exact Reported
p004 / 6979 · Results and discussion · Fig. 1f
initial 1C discharge capacity146 mA h g^-1Text
Exact Reported
p004 / 6979 · Results and discussion · Fig. 1f
capacity retention after 300 cycles95.2%Text
Exact Reported
p004 / 6979 · Results and discussion · Fig. 1f

Galvanostatic cycling

Li|flexible LCMOF-2 composite SE|LiFePO4 cell · Electrode

Room-temperature 1C cycling of LCMOF-2 flexible composite SE SSB.

Temperature
298
Geometry
Li|SE|LiFePO4 half cell
Context
LCMOF-2 composite SE
Measurement source
p006 / 6981 · Results and discussion · Fig. 4h
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
LCMOF-2 1C capacity after 500 cycles137 mA h g^-1Text
Exact Reported
p006 / 6981 · Results and discussion · Fig. 4h
LCMOF-2 decay rate per cycle0.12 per mille per cycleText
Exact Reported
p006 / 6981 · Results and discussion · Fig. 4h
LCMOF-2 1C initial/early discharge capacity146 mA h g^-1Text
Exact Reported
p006 / 6981 · Results and discussion · Fig. 4h

Galvanostatic cycling

Li|flexible LCMOF-3 composite SE|LiFePO4 cell · Electrode

Room-temperature 1C cycling of LCMOF-3 flexible composite SE SSB.

Temperature
298
Geometry
Li|SE|LiFePO4 half cell
Context
LCMOF-3 composite SE
Measurement source
p006 / 6981 · Results and discussion · Fig. 4i
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
LCMOF-3 1C stabilised capacity after 500 cycles142 mA h g^-1Text
Exact Reported
p006 / 6981 · Results and discussion · Fig. 4i

Galvanostatic Li plating/stripping and EIS

Flexible LCMOF-1/PVDF-HFP/Li-IL SE · Thin Film

Li|SE|Li symmetric cell; 0.05 mA for 200 h then 0.2 mA for 800 h at room temperature; before/after EIS.

Temperature
298
Geometry
Li|SE|Li symmetric cell
Context
flexible composite SE
Measurement source
p003-p005 / 6978-6980 · Electrochemical measurements; Results and discussion · Fig. 3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
stable Li plating/stripping durationMarked as a best value within this paperover 5000 cycles (1000 h)Text
Rounded Reported
p005 / 6980 · Results and discussion · Fig. 3a-c
polarisation voltage at 0.05 mA+/-25 mVText
Exact Reported
p005 / 6980 · Results and discussion · Fig. 3a,b
polarisation voltage at 0.2 mA+/-90 mVText
Exact Reported
p005 / 6980 · Results and discussion · Fig. 3a,c
total resistance after cyclingMarked as a best value within this paperabout 220 ohmText
Approximate
p005 / 6980 · Results and discussion · Fig. 3d
total resistance before cyclingaround 300 ohmText
Approximate
p005 / 6980 · Results and discussion · Fig. 3d
PVDF-HFP/Li-IL symmetric-cell short-circuit timeafter 310 hText
Rounded Reported
p005 / 6980 · Results and discussion · Fig. S13

Linear sweep voltammetry

Flexible LCMOF-1/PVDF-HFP/Li-IL SE · Thin Film

Li/SE/SS asymmetric cell; scan rate 1 mV s-1; room temperature; open-circuit to 6 V.

Temperature
298
Geometry
Li|SE|stainless steel
Context
flexible composite SE
Measurement source
p005 / 6980 · Results and discussion · Fig. 2d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
electrochemical stability windowMarked as a best value within this paper2.0-4.5 VText
Range
p005 / 6980 · Results and discussion · Fig. 2d
electrochemical stability window2.0-4.0 VText
Range
p005 / 6980 · Results and discussion · Fig. 2d