Electrical Transport — Flexible Smart Wearable Co@C@Carbon Fabric for Efficient Electromagnetic Shielding, Thermal Therapy, and Human Movement Monitoring

Measurement evidence

Electrical Transport

Flexible Smart Wearable Co@C@Carbon Fabric for Efficient Electromagnetic Shielding, Thermal Therapy, and Human Movement Monitoring · Bai W., Zhai J., Zhou S. et al. · Industrial and Engineering Chemistry Research · 2022 · 11825-11839

17 measurement groups · 32 results

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

Vector network analyser (Agilent E5063A), scattering parameters S11 and S21

Co-PCCF-1000 · Thin Film

Average EMI shielding effectiveness over 2-18 GHz.

Geometry
1.2 mm diameter circular specimen; ultra-thin 0.1 mm sample
Context
target PDMS-encapsulated textile
Measurement source
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6a,b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-PCCF-1000 average EMI SEMarked as a best value within this paper30.95 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6a,b
Co-PCCF-1000 average absorption efficiency SEAMarked as a best value within this paper22.35 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6b
Co-PCCF-1000 average reflection efficiency SER8.60 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6b
electromagnetic waves shielded by Co-PCCF-1000Marked as a best value within this papermore than 99.9%lower boundText
Approximate
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness
Co-PCCF transmission coefficient TT value of all Co-PCCF samples is almost equal to 0almost equal to 0Text
Approximate
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6c

Vector network analyser (Agilent E5063A), scattering parameters S11 and S21

Co-PCCF-700 · Thin Film

Average EMI shielding effectiveness over 2-18 GHz.

Geometry
1.2 mm diameter circular specimen
Context
target PDMS-encapsulated textile
Measurement source
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-PCCF-700 average EMI SE20.27 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6a

Vector network analyser (Agilent E5063A), scattering parameters S11 and S21

Co-PCCF-800 · Thin Film

Average EMI shielding effectiveness over 2-18 GHz.

Geometry
1.2 mm diameter circular specimen
Context
target PDMS-encapsulated textile
Measurement source
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-PCCF-800 average EMI SE24.11 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6a

Vector network analyser (Agilent E5063A), scattering parameters S11 and S21

Co-PCCF-900 · Thin Film

Average EMI shielding effectiveness over 2-18 GHz.

Geometry
1.2 mm diameter circular specimen
Context
target PDMS-encapsulated textile
Measurement source
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-PCCF-900 average EMI SE27.52 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6a

Vector network analyser (Agilent E5063A), scattering parameters S11 and S21

PCF-1000 · Thin Film

Average EMI shielding effectiveness over 2-18 GHz for PCF-1000 control.

Geometry
1.2 mm diameter circular specimen
Context
PDMS-coated carbon fabric control
Measurement source
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure S4a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
PCF-1000 average EMI SE15.27 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure S4a

Vector network analyser after durability treatments

Co-PCCF-1000 · Thin Film

EMI SE after 20-60 min ultrasonic treatment, 500 bending cycles at 90 degrees, and 1 M acid/alkali/salt immersion for 12 h.

Geometry
flexible fabric sheet
Context
target PDMS-encapsulated textile
Measurement source
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6d-f
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
EMI SE after 500 bending cycles at 90 degrees21.21 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6e
electromagnetic waves shielded after durability challengesstill blocks more than 99%lower boundText
Approximate
12 (11836) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6d-f
EMI SE after 20 min ultrasonic treatment26.27 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6d
EMI SE after 40 min ultrasonic treatment23.77 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6d
EMI SE after 60 min ultrasonic treatment21.08 dBText
Exact Reported
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6d

Vector network analyser (Agilent E5063A), scattering parameters S11 and S21

ZIF-67@CF · Thin Film

EMI shielding effectiveness over 2-18 GHz; sample punched to 1.2 mm diameter.

Geometry
1.2 mm diameter circular specimen
Context
MOF-loaded non-conductive precursor
Measurement source
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
ZIF-67@CF EMI shielding effectivenessalmost zeroText
Qualitative
11 (11835) · 3.5 Electromagnetic Interference Shielding Effectiveness · Figure 6a

DPS-305AF DC power supply with infrared thermal imaging

Co-PCCF-1000 · Thin Film

Steady-state Joule heating temperatures at 0-4 V.

Atmosphere
air
Geometry
fabric heater
Context
target PDMS-encapsulated textile
Measurement source
12 (11836) · 3.6 Thermal Therapy · Figures 7 and 8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
steady-state temperature at 0 V22.5 CText
Exact Reported
12 (11836) · 3.6 Thermal Therapy · Figure 8a
steady-state temperature at 1.5 V41.8 CText
Exact Reported
12 (11836) · 3.6 Thermal Therapy · Figure 8c
steady-state temperature at 1 V31.5 CText
Exact Reported
12 (11836) · 3.6 Thermal Therapy · Figure 8b
steady-state temperature at 2.5 V67.7 CText
Exact Reported
12 (11836) · 3.6 Thermal Therapy · Figure 8e
steady-state temperature at 2 V52.7 CText
Exact Reported
12 (11836) · 3.6 Thermal Therapy · Figure 8d
steady-state temperature at 3.5 V101 CText
Exact Reported
12 (11836) · 3.6 Thermal Therapy · Figure 8g
steady-state temperature at 3 V84.9 CText
Exact Reported
12 (11836) · 3.6 Thermal Therapy · Figure 8f
steady-state temperature at 4 VMarked as a best value within this paper126 CText
Exact Reported
12 (11836) · 3.6 Thermal Therapy · Figure 8h

RTS-9 four-point detector

CF-1000 · Thin Film

Surface resistance of CF-1000 control fabric.

Geometry
fabric sheet; sheet resistance
Context
carbon fabric control
Measurement source
10 (11834) · 3.4 Density and Surface Resistance · Figure S3a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CF-1000 surface resistance29.46 ohm/sqText
Exact Reported
10 (11834) · 3.4 Density and Surface Resistance · Figure S3a

RTS-9 four-point detector

CF-700 · Thin Film

Surface resistance of CF-700 control fabric.

Geometry
fabric sheet; sheet resistance
Context
carbon fabric control
Measurement source
10 (11834) · 3.4 Density and Surface Resistance · Figure S3a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CF-700 surface resistance1323.6 ohm/sqText
Exact Reported
10 (11834) · 3.4 Density and Surface Resistance · Figure S3a

RTS-9 four-point detector

CF-800 · Thin Film

Surface resistance of CF-800 control fabric.

Geometry
fabric sheet; sheet resistance
Context
carbon fabric control
Measurement source
10 (11834) · 3.4 Density and Surface Resistance · Figure S3a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CF-800 surface resistance57.74 ohm/sqText
Exact Reported
10 (11834) · 3.4 Density and Surface Resistance · Figure S3a

RTS-9 four-point detector

CF-900 · Thin Film

Surface resistance of CF-900 control fabric.

Geometry
fabric sheet; sheet resistance
Context
carbon fabric control
Measurement source
10 (11834) · 3.4 Density and Surface Resistance · Figure S3a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CF-900 surface resistance49.98 ohm/sqText
Exact Reported
10 (11834) · 3.4 Density and Surface Resistance · Figure S3a

RTS-9 four-point detector

Co-CCF-1000 · Thin Film

Surface resistance of Co-CCF-1000.

Geometry
fabric sheet; sheet resistance
Context
MOF-derived carbon/Co textile
Measurement source
10 (11834) · 3.4 Density and Surface Resistance · Figure 5b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-CCF-1000 surface resistanceMarked as a best value within this paper5.2 ohm/sqText
Exact Reported
10 (11834) · 3.4 Density and Surface Resistance · Figure 5b

RTS-9 four-point detector

Co-CCF-700 · Thin Film

Surface resistance of Co-CCF-700.

Geometry
fabric sheet; sheet resistance
Context
MOF-derived carbon/Co textile
Measurement source
10 (11834) · 3.4 Density and Surface Resistance · Figure 5b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-CCF-700 surface resistance22.2 ohm/sqText
Exact Reported
10 (11834) · 3.4 Density and Surface Resistance · Figure 5b

RTS-9 four-point detector

Co-CCF-800 · Thin Film

Surface resistance of Co-CCF-800.

Geometry
fabric sheet; sheet resistance
Context
MOF-derived carbon/Co textile
Measurement source
10 (11834) · 3.4 Density and Surface Resistance · Figure 5b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-CCF-800 surface resistance17.2 ohm/sqText
Exact Reported
10 (11834) · 3.4 Density and Surface Resistance · Figure 5b

RTS-9 four-point detector

Co-CCF-900 · Thin Film

Surface resistance of Co-CCF-900.

Geometry
fabric sheet; sheet resistance
Context
MOF-derived carbon/Co textile
Measurement source
10 (11834) · 3.4 Density and Surface Resistance · Figure 5b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-CCF-900 surface resistance11.0 ohm/sqText
Exact Reported
10 (11834) · 3.4 Density and Surface Resistance · Figure 5b

RTS-9 four-point detector

Co-PCCF-1000 · Thin Film

Surface resistance of Co-PCCF-1000 after PDMS encapsulation.

Geometry
fabric sheet; sheet resistance
Context
target PDMS-encapsulated textile
Measurement source
10 (11834) · 3.4 Density and Surface Resistance · Figure 5b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-PCCF-1000 surface resistanceMarked as a best value within this paper9.9 ohm/sqText
Exact Reported
10 (11834) · 3.4 Density and Surface Resistance · Figure 5b