Electrochemistry Application — Tuning the dxy Orbital Energy Level in 2D Cobalt-Organic-Framework via in-Plane Conjugated Phthalocyanine for Self-Powered Sensing

Measurement evidence

Electrochemistry Application

Tuning the dxy Orbital Energy Level in 2D Cobalt-Organic-Framework via in-Plane Conjugated Phthalocyanine for Self-Powered Sensing · Yue J., Du J., Li C. et al. · Advanced Functional Materials · 2025 · 2418474

2 measurement groups · 19 results

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

GCD, CV, EIS, cycling and Ragone analysis for flexible all-solid-state supercapacitor

2D MOF@Pc/DNH · Unknown

2D MOF@Pc/DNH hydrogel soaked in 2 mol L-1 H2SO4 and sandwiched between active carbon films; CV 0-1.0 V at 10 mV s-1; EIS 10^-2 to 10^5 Hz; GCD 0.5-10 A g-1.

Geometry
flexible all-solid-state supercapacitor with AC films and nickel foam encapsulation
Context
Target compared with 2D MOF/DNH and 3D controls.
Measurement source
5-6 · Results and Discussion · Figure 3h-j; Figures S15-S21
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CV scan rate10 mV s-1Text
Exact Reported
5 · Results and Discussion · Figure S16
CV voltage window0-1.0 VText
Exact Reported
5 · Results and Discussion · Figure S16
EIS ion-diffusion resistance trend2D MOF@Pc/DNH exhibited steeper low-frequency slope and reduced high-frequency semicircle radius than 2D MOF/DNHQualitative
Qualitative
5 · Results and Discussion · Figure S17
Main GCD comparison current density1 A g-1Caption
Exact Reported
6 · Figure caption · Figure 3h
GCD current-density test range0.5 A g-1 to 10 A g-1Text
Range
5 · Results and Discussion · Figure S18
Capacitance retention after bending92% after 5000 bending cycles5000 cyclesText
Exact Reported
5 · Results and Discussion · Figure S20
Specific capacitance retained at 10 A g-1980 F g-1 at 10 A g-1Text
Exact Reported
5 · Results and Discussion · Figure 3i; Figure S18
Specific capacitance retention after cycling93% after 10000 cycles10000 cyclesText
Exact Reported
5 · Results and Discussion · Figure S21
Energy density at high power density92 Wh kg-1 at 7800 W kg-17800 W kg-1Text
Exact Reported
5 · Results and Discussion · Figure 3j
Peak specific capacitanceMarked as a best value within this paper1170 F g-1Text
Exact Reported
5 · Results and Discussion · Figure 3i
Peak energy densityMarked as a best value within this paper125 Wh kg-1 at 390 W kg-1390 W kg-1Text
Exact Reported
5 · Results and Discussion · Figure 3j

Triboelectric nanogenerator output test

2D MOF@Pc/DNH · Unknown

Ag/2D MOF@Pc/DNH || PVDF/Ag TENG; vertical contact-separation; output power evaluated with external resistance 10 kOhm to 400 MOhm at 1 Hz.

Temperature
298
Atmosphere
air/ambient
Geometry
single-electrode TENG, 4 x 4 cm2 effective contact area
Context
Target 2D MOF@Pc/DNH compared with 2D MOF/DNH and 3D controls.
Measurement source
5-6 · Results and Discussion · Figure 3a-g; Table S2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Capacitor charging demonstration voltage2.2 uF capacitor to 4 VText
Exact Reported
5 · Results and Discussion · Figure 3e-f
Short-circuit current19.2 uAText
Exact Reported
5 · Results and Discussion · Figure 3b
Maximum power densityMarked as a best value within this paper2 W m-2Text
Exact Reported
5 · Results and Discussion · Figure 3d; Table S2
Short-circuit charge quantity87.1 nCText
Exact Reported
5 · Results and Discussion · Figure 3c
TENG repeated-measurement stabilityabout 10000 repeated measurements, no notable voltage dropText
Approximate
5 · Results and Discussion · Figure 3g
2D MOF@Pc/DNH power density in SI TENG comparison table2 W m-2SI Table
Exact Reported
31 · Results and discussion · Table S2
2D MOF@Pc/DNH voltage in SI TENG comparison table295 VSI Table
Exact Reported
31 · Results and discussion · Table S2
Maximum open-circuit voltageMarked as a best value within this paper295 VText
Exact Reported
5 · Results and Discussion · Figure 3a; Table S2