Porosity — Dual-metal sites enable conductive metal-organic frameworks with extraordinary high capacitance for transparent energy storage devices

Measurement evidence

Porosity

Dual-metal sites enable conductive metal-organic frameworks with extraordinary high capacitance for transparent energy storage devices · Zhao C.-E., Wang S., Chen S. et al. · Chemical Science · 2025 · 9276-9283

1 measurement group · 9 results

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

N2 adsorption-desorption; BET and BJH analysis

CuNi-HHTP nanorods · Powder

BET surface area, BJH average pore size, and BJH pore volume for Cu-HHTP, Ni-HHTP, and CuNi-HHTP.

Atmosphere
N2
Context
pristine framework and pristine controls
Measurement source
S5 · Figures and tables · Table S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu-HHTP BET surface area153.82 m2 g-1SI Table
Exact Reported
S5 · Figures and tables · Table S1
CuNi-HHTP BET surface area192.07 m2 g-1SI Table
Exact Reported
S5 · Figures and tables · Table S1
Ni-HHTP BET surface areaMarked as a best value within this paper355.11 m2 g-1SI Table
Exact Reported
S5 · Figures and tables · Table S1
Cu-HHTP BJH average pore size12.909 nmSI Table
Exact Reported
S5 · Figures and tables · Table S1
CuNi-HHTP BJH average pore size8.692 nmSI Table
Exact Reported
S5 · Figures and tables · Table S1
Ni-HHTP BJH average pore size7.076 nmSI Table
Exact Reported
S5 · Figures and tables · Table S1
Cu-HHTP BJH pore volumeMarked as a best value within this paper0.5188 cm3 g-1SI Table
Exact Reported
S5 · Figures and tables · Table S1
CuNi-HHTP BJH pore volume0.4727 cm3 g-1SI Table
Exact Reported
S5 · Figures and tables · Table S1
Ni-HHTP BJH pore volume0.4072 cm3 g-1SI Table
Exact Reported
S5 · Figures and tables · Table S1