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Pore characterisation of the monolithic polymer showed unimodal pore size distributions at different radial positions with an identical modal pore size of 400 nm.
The catalyst possessed 16.78 m2/g specific surface area, 0.0313 cc/g pore volume and 33.14 nm modal pore size with an acidity of 11.22 mmol KOH/g catalyst.
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Zeolite crystals coated on mesoporous glass materials with hierarchical tri-modal pore size distributions have been successfully prepared and characterized.
Textural properties were dictated by the hard template, obtaining a bi-modal pore size distribution with similar micropore sizes but different mesopore sizes.
By including effective medium theory (EMT), the oscillator model fitted well the experimental results and gave good prediction of mass transfer in ultra-microporous materials with a tri-modal pore size distribution, such as silica membranes.
Bulk dielectric MgAl2O4 ceramics, which are used for the preparation of humidity-sensitive thick-film layers, are characterized by tri-modal pore size distributions (Figure 2).
Further peaks indicate multi-modal pore size distribution consisting of portions of larger interstitial pores (in the range of 7 15 μm) and majority of smaller pores with median pore radius of 2.6 µm comprising ~53%% of the open porosity.
In these porous materials with narrow, mono-modal pore size distributions, details of the peak shape are determined predominantly by the raw data quality (degree of smoothing on inversion[ 43]) and are not considered representative of physical sample properties.
The reported average pore size (2 t) is comparable to the average pore diameter.
Pore size distribution was computed using the adsorption branch of the isotherm by the NLDFT method, showing an average pore size of 1.3 nm in Fig. 2d.
Average pore size and pore size ranges of the prepared scaffolds are summarized in Table 3.
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