Microscopy Morphology — Piezoelectric-mediated two-dimensional copper-based metal–organic framework for synergistic sonodynamic and cuproptosis-driven tumor therapy

Measurement evidence

Microscopy Morphology

Piezoelectric-mediated two-dimensional copper-based metal–organic framework for synergistic sonodynamic and cuproptosis-driven tumor therapy · Zhong X., Li X., Gu L. et al. · Journal of Colloid and Interface Science · 2025 · 354-363

2 measurement groups · 6 results

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

TEM and hydrodynamic size analysis

CM nanosheets · Nanosheet

TEM after PVP coating and hydrated particle-size distribution for CM.

Atmosphere
aqueous dispersion
Context
PVP-coated Cu-2MI composite
Measurement source
p003-p004 · 2.1 Synthesis and characterization · Fig. 1e-g
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CM hydrated particle sizeapproximately 180 +/- 20 nm+/- 20 nmText
Approximate
p003 · 2.1 Synthesis and characterization · Fig. 1g

TEM and AFM

Cu-2MI nanosheets · Nanosheet

Transmission electron microscopy and atomic force microscopy used to assess nanosheet morphology, lateral size and thickness.

Context
pristine Cu-2MI framework
Measurement source
p002-p004 · 2.1 Synthesis and characterization · Fig. 1a-c; Fig. S1-S2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu-2MI AFM image colourbar maximum13.7 nmFigure Axis
Rounded Reported
S10 · Supplementary figures · Fig. S2
Cu-2MI AFM image colourbar minimum-3.7 nmFigure Axis
Rounded Reported
S10 · Supplementary figures · Fig. S2
Cu-2MI average lateral diameterapproximately 130 +/- 20 nm+/- 20 nmText
Approximate
p002 · 2.1 Synthesis and characterization · Fig. 1a; Fig. S1
Cu-2MI particle-size distribution mode from Fig. S1mode around 130-140 nmvisual bin range about 130-140 nmFigure Axis
Approximate
S10 · Supplementary figures · Fig. S1
Cu-2MI nanosheet thicknessaround 10 nmText
Approximate
p002 · 2.1 Synthesis and characterization · Fig. 1b-c; Fig. S2