| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 8204185 | Physics Letters A | 2018 | 5 Pages | 
Abstract
												Density functional theory (DFT) is employed to investigate the interactions of CO2 gas molecules with pristine and lithium-functionalized germanene. It is discovered that although a single CO2 molecule is weakly physisorbed on pristine germanene, a significant improvement on its adsorption energy is found by utilizing Li-functionalized germanene as the adsorbent. Excitingly, the moderate adsorption energy at high CO2 coverage secures an easy release step. Moreover, the structure of Li-functionalized germanene can be fully recovered after removal of CO2 gas molecules. Our results suggest that Li-functionalized germanene show promise for CO2 sensing and capture with a storage capacity of 12.57 mol/kg.
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											Authors
												S. Mehdi Aghaei, M.M. Monshi, I. Torres, M. Banakermani, I. Calizo, 
											