Molecular Recognition between Carbon Dioxide and Biodegradable Hydrogel Models: A Density Functional Theory (DFT) Investigation

被引:2
作者
Carrascal-Hernandez, Domingo Cesar [1 ]
Mendez-Lopez, Maximiliano [1 ]
Insuasty, Daniel [1 ]
Garcia-Freites, Samira [2 ]
Sanjuan, Marco [2 ]
Marquez, Edgar [1 ]
机构
[1] Univ Norte, Fac Ciencias Bas, Dept Quim & Biol, Barranquilla 080020, Colombia
[2] Promigas SA ESP, Ctr Invest Innovac Energia & Gas CIIEG, Barranquilla 11001, Colombia
关键词
carbon dioxide; CO2-capture; frontier molecular orbitals; green-hydrogen; DFT; CO2; CAPTURE; BOUNDARY DAM; ABSORPTION; ADSORPTION; STORAGE; ENERGY; LEVEL;
D O I
10.3390/gels10060386
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
In this research, we explore the potential of employing density functional theory (DFT) for the design of biodegradable hydrogels aimed at capturing carbon dioxide (CO2) and mitigating greenhouse gas emissions. We employed biodegradable hydrogel models, including polyethylene glycol, polyvinylpyrrolidone, chitosan, and poly-2-hydroxymethacrylate. The complexation process between the hydrogel and CO2 was thoroughly investigated at the omega B97X-D/6-311G(2d,p) theoretical level. Our findings reveal a strong affinity between the hydrogel models and CO2, with binding energies ranging from -4.5 to -6.5 kcal/mol, indicative of physisorption processes. The absorption order observed was as follows: chitosan > PVP > HEAC > PEG. Additionally, thermodynamic parameters substantiated this sequence and even suggested that these complexes remain stable up to 160 degrees C. Consequently, these polymers present a promising avenue for crafting novel materials for CO2 capture applications. Nonetheless, further research is warranted to optimize the design of these materials and assess their performance across various environmental conditions.
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页数:12
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