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

Measurement evidence

Sensing 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

3 measurement groups · 13 results

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

Mechanical testing and underwater sensing demonstrations

2D MOF@Pc/DNH · Unknown

Tensile stress-strain, compression fatigue, water immersion, Morse-code wrist-bending communication, water-depth response and body-motion monitoring.

Atmosphere
water/saltwater simulations for some tests
Geometry
wearable hydrogel sensor on wrist, elbow and knee
Context
Target 2D MOF@Pc/DNH sensor.
Measurement source
5,8-9 · Results and Discussion · Figure 5; Figures S22-S24
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Compression-relaxation fatigue test cycles1000 cycles at epsilon = 98%98 % strainText
Exact Reported
5 · Results and Discussion · Figure S24
Wrist bending amplitude classified as dashabout 90 degText
Approximate
7 · Results and Discussion · Figure 5c
Strain at tensile strength296%Text
Exact Reported
5 · Results and Discussion · Figure S23
Maximum tensile strengthMarked as a best value within this paper215 kPaText
Exact Reported
5 · Results and Discussion · Figure S23
Water immersion demonstration duration30 daysText
Exact Reported
8-9 · Results and Discussion · Figure 5f

Resistance-based compression/pressure sensing

2D MOF@Pc/DNH · Unknown

Compression sensitivity split into low-pressure S1 and high-pressure S2 regions with repeated compression/release testing.

Geometry
hydrogel compression sensor
Context
Target 2D MOF@Pc/DNH sensor.
Measurement source
7 · Results and Discussion · Figure 4f-j
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Compression-release durability cycles800 compression and release testsText
Exact Reported
7 · Results and Discussion · Figure 4i-j
Compression gauge factor S11.41Text
Exact Reported
7 · Results and Discussion · Figure 4f
Compression gauge factor S20.71Text
Exact Reported
7 · Results and Discussion · Figure 4f

Resistance-based tensile strain sensing

2D MOF@Pc/DNH · Unknown

Resistance measured in real time with Keithley DMM7510; GF = deltaR/(epsilon R0); periodic motion by linear motor.

Geometry
8 cm x 1 cm x 0.3 cm strip connected to Ag tape and copper wires
Context
Target 2D MOF@Pc/DNH sensor.
Measurement source
6-7 · Results and Discussion · Figure 4a-e; Table S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Maximum tensile gauge factorMarked as a best value within this paper13.63 within strain of 250-320%Text
Exact Reported
6 · Results and Discussion · Figure 4b; Table S3
Strain sensor recovery time12 msText
Exact Reported
6 · Results and Discussion · Figure 4a
Strain sensor response time15 msText
Exact Reported
6 · Results and Discussion · Figure 4a
2D MOF@Pc/DNH gauge factor in SI comparison tableMarked as a best value within this paper13.63SI Table
Exact Reported
32 · Results and discussion · Table S3
Tensile loading/unloading stability cycles10000 loading and unloading cyclesText
Exact Reported
6 · Results and Discussion · Figure 4e