Selective Carbon Dioxide versus Nitrous Oxide Adsorption in Cerium(IV) Bithiazole and Bipyridyl Metal‐Organic Frameworks

Author:

Pugliesi Matteo1ORCID,Cavallo Margherita2,Atzori Cesare3ORCID,Garetto Beatrice2,Borfecchia Elisa2ORCID,Donà Lorenzo2ORCID,Civalleri Bartolomeo2ORCID,Tuci Giulia1ORCID,Giambastiani Giuliano14ORCID,Galli Simona5ORCID,Bonino Francesca2ORCID,Rossin Andrea1ORCID

Affiliation:

1. Istituto di Chimica dei Composti Organometallici (CNR‐ICCOM) Via Madonna del Piano 10 Sesto Fiorentino (Firenze) 50019 Italy

2. Department of Chemistry NIS and INSTM Reference Centre Università di Torino Via G. Quarello 15, 10135 and Via P. Giuria 7 Torino 10125 Italy

3. European Synchrotron Radiation Facility 71 avenue des Martyrs, CS 40220, Cedex 9 Grenoble 38043 France

4. Dipartimento di Chimica Ugo Schiff Università di Firenze Via della Lastruccia 3–13 Sesto Fiorentino (Firenze) 50019 Italy

5. Dipartimento di Scienza e Alta Tecnologia Università degli Studi dell'Insubria Via Valleggio 11 Como 22100 Italy

Abstract

AbstractThe two CeIV MOFs [Ce6O4(OH)4(TzTz)6] (Ce_TzTz) and [Ce6O4(OH)4(TzTz)4(PyPy)2] (Ce_TzTz_PyPy; H2TzTz = [2,2′‐bithiazole]‐5,5′‐dicarboxylic acid, H2PyPy = 2,2′‐bipyridine‐5,5′‐dicarboxylic acid) are prepared starting from a pre‐formed [Ce6] glycinate‐capped cluster. N2 isotherms collected at 77 K revealed BET specific surface areas of 1136 and 238 m2 g−1, respectively. Their CO2 and N2O adsorption capacity is assessed at T = 273 and 298 K and p = 1 bar. Ce_TzTz shows the highest gas uptake (7.9 and 9.7 wt% at 298 K and 11.5 and 12.5 wt% at 273 K for CO2 and N2O, respectively). More interestingly, this homo‐linker MOF possesses a higher capacity, thermodynamic affinity [(Qst)CO2 = 18.2 kJ mol−1 vs (Qst)N2O = 25.4 kJ mol−1] and selectivity (IAST SN2O/CO2 = 1.6 at T = 273 K) toward N2O than the mixed‐linker sample. At variance, Ce_TzTz_PyPy shows a slightly higher capacity, thermodinamic affinity [(Qst)CO2 = 29.5 kJ mol−1 vs (Qst)N2O = 26.4 kJ mol−1] and selectivity (IAST SCO2/N2O = 1.4 at T = 298 K) toward CO2. DFT optimizations carried out on the [N2O@Ce_TzTz] and [CO2@Ce_TzTz_PyPy] systems revealed that the primary adsorption sites are the cerium ions of the [Ce6] metallic node for N2O and the thiazole N‐atoms on the TzTz linker for CO2, respectively.

Funder

Dipartimenti di Eccellenza

Ministero dell'Università e della Ricerca

Publisher

Wiley

Reference70 articles.

1. https://www.epa.gov/ghgemissions/overview‐greenhouse‐gases;https://climate.nasa.gov/vital‐signs/carbon‐dioxide/;https://www.cop28.com/en/.

2. Introduction to Reticular Chemistry

3. Metal-Organic Frameworks

4. Metal-Organic Frameworks

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