Selective capture and separation of potent greenhouse gases with gallium- and vanadium-based metal-organic frameworks

Селективный захват и разделение мощных парниковых газов с помощью металлоорганических каркасов на основе галлия и ванадия
Osamu Terasaki, Maria Strømme, Michelle Åhlén, Hae Sung Cho, Yi Zhou, Daniel Hedbom, Ocean Cheung
2023-02-14

CO2/N2 (or CO2/CH4) selective adsorptionSF6 capture and separationgallium-based metal-organic frameworkshigh surface area porous MOFs (Langmuir ~900–1800 m2 g-1)vanadium-based metal-organic frameworks
Four novel metal-organic frameworks (MOFs) composed of 1,3,6,8-tetrakis(4-carboxyphenyl)pyrene (TBAPy4-) or 1,2,4,5-tetrakis(4-carboxlatephenyl)benzene (TCPB4-) linkers with gallium (Ga) or vanadium (V) were synthesized in this work. 3D electron diffraction patterns combined with high-resolution electron microscopy images were employed to investigate the structure of these MOFs. All four MOFs were highly porous with specific Langmuir surface area ranging from ~900 to over ~1800 m2 g-1. The MOFs also showed high uptake of greenhouse gas and especially selective towards SF6 (110 cm3 cm-3, 293 K 1 bar) and CO2 over N2 (or CH4). Sorption kinetics were investigated in detail and the MOF with the highest gas uptake had pore channels with diameters of approx. 9.1 13.6 and 6.5 13.7 in dimension. These Ga- and V-MOFs are potentially interesting candidate sorbents for greenhouse gas capture and separation applications, especially for the separation of SF6 and CO2 from N2, which are relevant in the electronics and chemical industry, respectively.
1
All four MOFs are highly porous, with Langmuir surface areas ranging from ~900 to >~1800 m2 g-1.
2
Four novel MOFs based on TBAPy4- or TCPB4- linkers with gallium or vanadium were synthesized and structurally characterized by 3D electron diffraction and high-resolution electron microscopy.
3
Ga- and V-based MOFs are promising candidate sorbents for capture and separation of SF6 and CO2 relevant to electronics and chemical industry applications.
4
Sorption kinetics were investigated in detail, and the highest-uptake MOF has pore channels with approximate dimensions 9.1–13.6 Å and 6.5–13.7 Å.
5
The MOFs exhibit high uptake of greenhouse gases and show strong selectivity toward SF6 (110 cm3 cm-3 at 293 K, 1 bar) over other gases.
6
The MOFs preferentially adsorb CO2 over N2 (and over CH4), indicating usefulness for CO2/N2 (and CO2/CH4) separations.

Gallium- and vanadium-based metal–organic frameworks (four novel MOFs built from TBAPy4- or TCPB4- linkers)

Selective capture, uptake capacity, sorption kinetics, pore-channel dimensions, and separation performance for potent greenhouse gases (especially SF6 and CO2 vs N2/CH4)

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2023-02-14
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Osamu Terasaki
Maria Strømme
Michelle Åhlén
Hae Sung Cho
Yi Zhou
Daniel Hedbom
Ocean Cheung
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