Carbon dioxide capture from open air using covalent organic frameworks.

Zhou, Zihui; Ma, Tianqiong; Zhang, Heyang; Chheda, Saumil; Li, Haozhe; Wang, Kaiyu; Ehrling, Sebastian; Giovine, Raynald et al. · Nature · 2024

basic_science · Level V

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Abstract

Capture of CO<sub>2</sub> from the air offers a promising approach to addressing climate change and achieving carbon neutrality goals<sup>1,2</sup>. However, the development of a durable material with high capacity, fast kinetics and low regeneration temperature for CO<sub>2</sub> capture, especially from the intricate and dynamic atmosphere, is still lacking. Here a porous, crystalline covalent organic framework (COF) with olefin linkages has been synthesized, structurally characterized and post-synthetically modified by the covalent attachment of amine initiators for producing polyamines within the pores. This COF (termed COF-999) can capture CO<sub>2</sub> from open air. COF-999 has a capacity of 0.96 mmol g<sup>-1</sup> under dry conditions and 2.05 mmol g<sup>-1</sup> under 50% relative humidity, both from 400 ppm CO<sub>2</sub>. This COF was tested for more than 100 adsorption-desorption cycles in the open air of Berkeley, California, and found to fully retain its performance. COF-999 is an exceptional material for the capture of CO<sub>2</sub> from open air as evidenced by its cycling stability, facile uptake of CO<sub>2</sub> (reaches half capacity in 18.8 min) and low regeneration temperature (60 °C).