Porosity — A Triptycene-Based Layered/Flower-Like 2D Conductive Metal–Organic Framework with 3D Extension as an Electrode for Efficient Li Storage

Measurement evidence

Porosity

A Triptycene-Based Layered/Flower-Like 2D Conductive Metal–Organic Framework with 3D Extension as an Electrode for Efficient Li Storage · Liu X., Yu M., Liu J. et al. · Small · 2024 · 2306159

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; BET analysis; pore-size distribution

Pristine M-DBH powders (M = Ni, Co, Mn) · Powder

N2 adsorption at 77 K; ASAP 2460 BET method.

Temperature
77
Atmosphere
N2
Context
Pristine M-DBH powders
Measurement source
p003 · Results and Discussion 2.1 · Figure 2b-c; Figure S8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-DBH and Mn-DBH porosity relative to Ni-DBHsurface area and pore size distribution similar to Ni-DBHText
Qualitative
p003-p004 · Results and Discussion 2.1 · Figure S8
Ni-DBH BET surface area163.46 cm2 g^-1Text
Exact Reported
p003 · Results and Discussion 2.1 · Figure 2b
Ni-DBH pore-size distribution peaks1.3 and 1.6 nmText
Rounded Reported
p003 · Results and Discussion 2.1 · Figure 2c
Ni-DBH pore volume0.37 cm3 g^-1Text
Exact Reported
p003 · Results and Discussion 2.1 · Figure 2b