Other — Metal–(organic cocrystal) framework with a photothermal effect boosting the photocatalytic degradation of pollutants

Measurement evidence

Other

Metal–(organic cocrystal) framework with a photothermal effect boosting the photocatalytic degradation of pollutants · Liu M., Liu K., Yan Z. et al. · Journal of Materials Chemistry A · 2026 · 4444-4452

4 measurement groups · 10 results

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

Static water contact angle

Ac@[Ca-NDI] MOCF powder · Powder

Water contact angle measured to evaluate hydrophilicity of Ac@[Ca-NDI] MOCF.

Context
Target MOCF surface property.
Measurement source
main p.4, article p.4447 · Results and discussion · Fig. S20
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Static water contact angle of Ac@[Ca-NDI] MOCF~16.2 degree~Text
Approximate
main p.4, article p.4447 · Results and discussion · Fig. S20

Photothermal heating/cooling under 808 nm laser

Ac@[Ca-NDI] MOCF powder · Powder

90 mg MOCF powder in quartz cell, 808 nm laser, 0.6 W/cm2 for conversion efficiency; power density varied from 0.2 to 0.8 W/cm2.

Atmosphere
Air or ambient atmosphere not specified.
Geometry
Powder in quartz cell.
Context
Target MOCF powder; Ca-NDI MOF comparison in Fig. 3b.
Measurement source
SI pp.4-5 · Photothermal Experiments · Figs. 3b-e and S12-S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Temperature reached after 50 s under 808 nm heating108 C within 50 sText
Exact Reported
main p.3, article p.4446 · Results and discussion · Fig. 3b
Initial temperature under 808 nm heating29.9 CText
Exact Reported
main p.3, article p.4446 · Results and discussion · Fig. 3b
Photothermal conversion efficiency under 808 nm irradiationMarked as a best value within this paper70.65%Text
Exact Reported
SI p.5 · Photothermal Experiments · Figs. S12 and S13
Maximum temperature at 0.8 W cm-2131.1 CText
Exact Reported
main p.3, article p.4446 · Results and discussion · Fig. 3d and Fig. S14
Maximum temperature at 0.2 W cm-255.9 CText
Exact Reported
main p.3, article p.4446 · Results and discussion · Fig. 3d and Fig. S14

Photothermal heating of aqueous dispersion under Xe lamp

Ac@[Ca-NDI] MOCF powder · Powder

30 mg powder dispersed at 1 mg/mL; 300 W Xe lamp, 300 nm < lambda < 1200 nm, about 10 cm above liquid surface.

Geometry
Aqueous dispersion; infrared thermal imaging.
Context
Target MOCF in water with pure-water blank.
Measurement source
SI p.5 · Photothermal Experiments · Figs. 3f, S17 and S18
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Aqueous dispersion temperature under 300-1200 nm Xe lamp62.1 C within 20 minText
Exact Reported
main p.4, article p.4447 · Results and discussion · Fig. 3f and Fig. S18
Aqueous dispersion temperature under 300-780 nm Xe lamp46.5 C within 20 minText
Exact Reported
main p.4, article p.4447 · Results and discussion · Fig. 3f
Pure-water blank temperature under Xe lamp51.8 CText
Exact Reported
main p.4, article p.4447 · Results and discussion · Fig. 3f

Thermogravimetric analysis (TGA)

Ac@[Ca-NDI] MOCF powder · Powder

TGA spectra of Ac@[Ca-NDI] MOCF and Ca-NDI MOF; used to assess stability near reaction temperature.

Context
Target compared with pristine Ca-NDI MOF.
Measurement source
main p.4, article p.4447 · Results and discussion · Fig. S19
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
TGA weight loss below 100 Conly a slight weight loss below 100 CQualitative
Qualitative
main p.4, article p.4447 · Results and discussion · Fig. S19