Electrical Transport — Two-Dimensional Electrically Conductive Metal-Organic Framework Boosts Synaptic Plasticity for Dynamic Image Refresh, Classification, and Efferent Neuromuscular Systems

Measurement evidence

Electrical Transport

Two-Dimensional Electrically Conductive Metal-Organic Framework Boosts Synaptic Plasticity for Dynamic Image Refresh, Classification, and Efferent Neuromuscular Systems · Wei H., Liu J., Ni Y. et al. · Nano Letters · 2024 · 15379-15387

2 measurement groups · 6 results

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

Current-voltage sweep

EC-MOF-L-AS lithium electrolyte artificial synapse · Electrode

I-V curves in the range of +/-5 V for the first ten laps.

Geometry
Vertical two-terminal EC-MOF/electrolyte artificial synapse
Context
EC-MOF-L-AS composite device
Measurement source
p002 / article p.15380 · Results and discussion · Figure S7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
I-V sweep voltage range+/-5 VCaption
Exact Reported
p007 · Supporting Information · Figure S7
Negative differential resistance potential range1.5 to 1.8 VText
Range
p002 / article p.15380 · Results and discussion · Figure S7

Low-amplitude pulse response and power-consumption calculation

EC-MOF-N-AS sodium electrolyte artificial synapse · Electrode

Millivolt-level pulses from 10 to 50 mV shown in Figure S16; power consumption reported at femtowatt level.

Geometry
Vertical two-terminal EC-MOF/electrolyte artificial synapse
Context
EC-MOF electrolyte device; sample assignment to Na device inferred from surrounding EC-MOF-N-AS discussion
Measurement source
p005-p006 / article pp.15383-15384 · Results and discussion / Conclusion · Figure S16
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
EC-MOF band gap~0.57 eVText
Approximate
p005 / article p.15383 · Results and discussion
Lowest voltage responseMarked as a best value within this paperas low as 10 mV0.01 VText
Rounded Reported
p006 / article p.15384 · Conclusion · Figure S16
Power consumptionMarked as a best value within this paperapproximately 1 fW1e-15 WText
Approximate
p001 / article p.15379 · Abstract · Figure S16; Table S1
Response-current regimeas low as subpicoamperesText
Approximate
p005 / article p.15383 · Results and discussion · Figure S16