Porosity — Dual nanozyme based on ultrathin 2D conductive MOF nanosheets intergraded with gold nanoparticles for electrochemical biosensing of H2O2 in cancer cells

Measurement evidence

Porosity

Dual nanozyme based on ultrathin 2D conductive MOF nanosheets intergraded with gold nanoparticles for electrochemical biosensing of H2O2 in cancer cells · Huang W., Xu Y., Wang Z. et al. · Talanta · 2022 · 123612

1 measurement group · 4 results

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

N2 adsorption/desorption and BET analysis

Cu-HHTP-NSs · Nanosheet

N2 uptake experiments at 77 K comparing activated Cu-HHTP-bulk, Cu-HHTP-NSs and Au-NPs/Cu-HHTP-NSs.

Temperature
77
Atmosphere
N2
Context
pristine controls and Au-loaded composite
Measurement source
4 · 3.1. Characterization · Fig. 2e-f; Figure S8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET surface area of Au-NPs/Cu-HHTP-NSs109.73 m2 g-1Text
Exact Reported
4 · 3.1. Characterization · Fig. 2e; Figure S8
BET surface area of Cu-HHTP-bulk60.5 m2 g-1Text
Exact Reported
4 · 3.1. Characterization · Fig. 2e; Figure S8
BET surface area of Cu-HHTP-NSsMarked as a best value within this paper169.6 m2 g-1Text
Exact Reported
4 · 3.1. Characterization · Fig. 2e; Figure S8
Major pore size region of Cu-HHTP-NSscentred at 1 nmText
Approximate
4 · 3.1. Characterization · Fig. 2f