Capture and detection of SO2 using a chemically stable Mg(ii)–MOF

Author:

Martínez-Ahumada Eva1,Kim Dae won2,Wahiduzzaman Mohammad3,Carmona-Monroy Paulina1,López-Olvera Alfredo1,Williams Daryl R.4,Martis Vladimir5,Lara-García Hugo A.6,López-Morales S.7,Solis-Ibarra Diego1ORCID,Maurin Guillaume3ORCID,Ibarra Ilich A.1ORCID,Hong Chang Seop2ORCID

Affiliation:

1. Laboratorio de Fisicoquímica y Reactividad de Superficies (LaFReS), Instituto de Investigaciones en Materiales, Universidad Nacional Autónoma de México, Circuito Exterior s/n, CU, Del. Coyoacán, 04510, Ciudad de México, Mexico

2. Department of Chemistry, Korea University, Seoul 02841, Republic of Korea

3. ICGM, Univ. Montpellier, CNRS, ENSCM, Montpellier, 34293, France

4. Director of Discovery Space and Professor of Particle Science, Department of Chemical Engineering, Imperial College, Kensington, London SW7 2BY, UK

5. Surface Measurement Systems, Unit 5, Wharfside, Rosemont Road, London HA0 4PE, UK

6. Instituto de Física, Universidad Nacional Autónoma de México, Circuito de la Investigación Científica s/n, CU, Coyoacán, Ciudad de México, Mexico

7. Instituto de Investigaciones en Materiales, Universidad Nacional Autónoma de México, Circuito Exterior s/n, CU, Del. Coyoacán, Ciudad de México, Mexico

Abstract

Mg2(dobpdc) was confirmed to be an optimal adsorbent for SO2 capture showing high uptake and chemical stability to dry and humid SO2. Advanced molecular simulations have been coupled to determine the molecular mechanisms responsible for high SO2 adsorption.

Funder

National Research Foundation of Korea

Consejo Nacional de Ciencia y Tecnología

Universidad Nacional Autónoma de México

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,General Chemistry

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