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Published on: June 1, 2018
Bicarbonate anion coordination assisted CO2 capture by using urea-morpholine hybrid receptors in water
Zhiwen Sun1, Ji Wang1, Qingling Nie1
1Key Laboratory of Medicinal Molecule Science and Pharmaceutics Engineering of Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 102488, China. zhaochem@bit.edu.cn.
Abstract:
The development of energy-efficient sorbents for aqueous CO2 capture remains a significant challenge. This work presents a new design strategy by integrating a tertiary amine (morpholine) with a urea motif into a single molecular receptor. This structure enables autonomous, base-free CO2 capture in water, where the urea groups provide complementary hydrogen-bonding sites for (bi)carbonate anions, while the morpholine moiety acts as an internal proton acceptor. The resulting receptors demonstrate a rapid uptake of CO2 from a simulated flue gas (10% CO2/N2), achieving a capacity of up to 1.22 mmol g-1. Spectroscopic studies (NMR, MS) and structural analysis of a model complex confirm that the capture proceeds via hydrogen-bond-stabilized bicarbonate formation. Crucially, the captured CO2 can be completely released under remarkably mild conditions, either by heating at ca. 40 °C or by simple N2 purging at ambient temperature. The receptors exhibit excellent recyclability over multiple capture-release cycles without capacity loss. This study highlights the potential of fine-tuning supramolecular interactions-particularly hydrogen bonding combined with a built-in base-to create low-energy, water-compatible CO2 capture systems.
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