Flexible metal-organic framework films for reversible low-pressure carbon capture and release

S Sumea Klokic (Institute of Inorganic Chemistry, Graz University of Technology, Stremayrgasse 9/IV, Graz 8010, Austria) B Benedetta Marmiroli G Giovanni Birarda F Florian Lackner P Paul Holzer B Barbara Sartori B Behnaz Abbasgholi-NA S Simone Dal Zilio (CNR-IOM - Istituto Officina Dei Materiali, Consiglio Nazionale Delle Ricerche, Area Science Park, Basovizza, Strada Statale 14, Km 163,5, Trieste 34149, Italy) R Rupert Kargl K Karin Stana Kleinschek C Chiaramaria Stani L Lisa Vaccari H Heinz Amenitsch (Institute of Inorganic Chemistry, Graz University of Technology, Stremayrgasse 9/IV, Graz 8010, Austria)

Abstract

Abstract Transitioning metal-organic frameworks (MOFs) from laboratory-scale to carbon dioxide (CO2) capture and storage applications (CCS) requires in-depth understanding of their adsorption properties and structural stability, especially for film assemblies. However, evaluating their performance is challenging, particularly under low or moderate CO2 pressure conditions, which are key for cost and performance efficiency. Herein, we explore the low-pressure CO2 uptake and release within flexible Zn-based MOF film structures with diverse ligand functionalities, employing quartz crystal microbalance, synchrotron radiation-based infrared spectromicroscopy and grazing incidence wide-angle X-ray scattering measurements. To investigate CO2 adsorption and its interaction with Zn-MOF pores, we exploited the framework’s flexibility by triggering structural changes and thus variations of the pore-environment using two stimuli, temperature and light. Results show considerable promise for stimuli-induced on-demand CO2 capture and release at low pressures, demonstrating structural reversibility under near-ambient conditions and highlighting the potential of tailored MOF film structures in advancing green CCS-technologies.

Article Details

Volume / Issue Vol. 16, Issue 1
Published August 04, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (13)

S

Sumea Klokic

Institute of Inorganic Chemistry, Graz University of Technology, Stremayrgasse 9/IV, Graz 8010, Austria

B

Benedetta Marmiroli

G

Giovanni Birarda

F

Florian Lackner

P

Paul Holzer

B

Barbara Sartori

B

Behnaz Abbasgholi-NA

S

Simone Dal Zilio

CNR-IOM - Istituto Officina Dei Materiali, Consiglio Nazionale Delle Ricerche, Area Science Park, Basovizza, Strada Statale 14, Km 163,5, Trieste 34149, Italy

R

Rupert Kargl

K

Karin Stana Kleinschek

C

Chiaramaria Stani

L

Lisa Vaccari

H

Heinz Amenitsch

Institute of Inorganic Chemistry, Graz University of Technology, Stremayrgasse 9/IV, Graz 8010, Austria