Other — In-situ growth of electrically conductive MOFs in wood cellulose scaffold for flexible, robust and hydrophobic membranes with improved electrochemical performance

Measurement evidence

Other

In-situ growth of electrically conductive MOFs in wood cellulose scaffold for flexible, robust and hydrophobic membranes with improved electrochemical performance · Wang Z., Sun B., Liao J. et al. · International Journal of Biological Macromolecules · 2024 · 127989

7 measurement groups · 11 results

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

tensile testing

50%-CuCAT@TOW membrane · Thin Film

50%-CuCAT@TOW tensile strength reported in text with Fig. S6 support.

Context
CuCAT composite membrane
Measurement source
p006 / journal page 6 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. S6
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
50%-CuCAT@TOW tensile strength186.6 MPaText
Rounded Reported
p006 / journal page 6 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. S6

tensile testing

50%-NiCAT@TOW membrane · Thin Film

50%-NiCAT@TOW membrane tensile properties compared with TOW scaffold and TOW membrane.

Geometry
20 mm x 15 mm samples
Context
composite membrane
Measurement source
p006 / journal page 6 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. 4a,c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
50%-NiCAT@TOW tensile strengthMarked as a best value within this paper187.9 MPaText
Rounded Reported
p006 / journal page 6 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. 4a,c

tensile testing

TOW membrane · Thin Film

Compressed TOW membrane tested along fibre growth direction.

Geometry
20 mm x 15 mm samples
Context
TOW membrane control
Measurement source
p006 / journal page 6 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. 4a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
TOW membrane elongation at break14.2%Text
Rounded Reported
p006 / journal page 6 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. 4a
TOW membrane tensile strengthMarked as a best value within this paper201.7 MPaText
Rounded Reported
p006 / journal page 6 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. 4a

tensile testing

TOW scaffold · Thin Film

20 mm x 15 mm samples tested along fibre alignment direction at 1 mm min-1.

Geometry
length x width = 20 mm x 15 mm
Context
TOW scaffold control
Measurement source
p003 / journal page 3 · 2.4 Materials characterization · Fig. 4a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
TOW scaffold elongation at break4.9%Text
Rounded Reported
p006 / journal page 6 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. 4a
TOW scaffold tensile strength22.7 MPaText
Rounded Reported
p006 / journal page 6 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. 4a

water contact angle

TOW membrane · Thin Film

Wetting controls for TOW scaffold, TOW membrane and 50%-Ni2+-TOW scaffold.

Atmosphere
ambient
Geometry
2 uL droplet
Context
non-MOF controls
Measurement source
p008 / journal page 8 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. 5d-f
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
TOW scaffold/TOW membrane/50%-Ni2+-TOW wettingcomplete wetting; no detectable WCA; figure labels CA about 0 degnot detectableText
Qualitative
p008 / journal page 8 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. 5d-f

water contact angle

50%-CuCAT@TOW membrane · Thin Film

Water contact angle for 50%-CuCAT@TOW, reported with Fig. S7 support.

Atmosphere
ambient
Geometry
2 uL droplet
Context
CuCAT composite membrane
Measurement source
p008 / journal page 8 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. S7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
50%-CuCAT@TOW water contact angle85.5 degText
Rounded Reported
p008 / journal page 8 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. S7

water contact angle

50%-NiCAT@TOW membrane · Thin Film

2 uL water droplet measured for 30 s on DSA100 at room temperature; deformation cases after twisting/bending.

Atmosphere
ambient
Geometry
2 uL droplet
Context
composite membrane
Measurement source
p003 / journal page 3 · 2.4 Materials characterization · Fig. 5a-b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
50%-NiCAT@TOW WCA after bendingCA about 130 deg after bendingaboutVisual Estimate
Approximate
p007 / journal page 7 · Figure 5 · Fig. 5b
50%-NiCAT@TOW water contact angleMarked as a best value within this paper~131.6 deg~Text
Approximate
p008 / journal page 8 · 3.2 Properties characterization of EC-MOF@TOW membrane · Fig. 5a
50%-NiCAT@TOW WCA after twistingCA about 132.1 deg after twistingaboutVisual Estimate
Approximate
p007 / journal page 7 · Figure 5 · Fig. 5b